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Informačné technológie, adaptívne riadenie, identifikácia systémov
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Citácie

  • Celkový počet citácií       338

L. Lundy – D. Fatta-Kassinos – J. Slobodník – P. Karaolia – Ľ. Čirka – N. Kreuzinger – S. Castiglioni – L. Bijlsma – V. Dulio – G. Deviller – F. Y. Lai – N. Alygizakis – M. Barneo – J. A. Baz-Lomba – F. Béen – M. Cíchová – K. Conde-Pérez – A. Covaci – E. Donner – A. Ficek – F. Hassard – A. Hedström – F. Hernandez – V. Janská – K. Jellison – J. Hofman – K. Hill – P. Hong – B. Kasprzyk-Hordern – S. Kolarević – J. Krahulec – D. Lambropoulou – R. de Llanos – T. Mackuľak – L. Martinez-García – F. Martínez – G. Medema – A. Micsinai – M. Myrmel – M. Nasser – H. Niederstätter – L. Nozal – H. Oberacher – V. Očenášková – L. Ogorzaly – D. Papadopoulos – B. Peinado – T. Pitkänen – M. Poza – S. Rumbo-Feal – M. B. Sánchez – A. J. Székely – A. Soltysova – N. S. Thomaidis – J. Vallejo – A. van Nuijs – V. Ware – M. Viklander: Making Waves: Collaboration in the time of SARS-CoV-2 - rapid development of an international co-operation and wastewater surveillance database to support public health decision-making. Water Research, č. 1, zv. 199, str. 1–7, 2021.
  • Počet citácií       21
  • Guerrero-Latorre, Laura – Collado, Neus – Abasolo, Nerea – Anzaldi, Gabriel – Bofill-Mas, Silvia – Bosch, Albert – Bosch, Lluis – Busquets, Silvia – Caimari, Antoni – Canela, Nuria – Carcereny, Albert – Chacon, Carme – Ciruela, Pilar – Corbella, Irene – Domingo, Xavier – Escote, Xavier – Espineira, Yaimara – Fores, Eva – Gandullo-Sarro, Isabel – Garcia-Pedemonte, David – Girones, Rosina – Guix, Susana – Hundesa, Ayalkibet – Itarte, Marta – Marine-Casado, Roger – Martinez, Anna – Martinez-Puchol, Sandra – Mas-Capdevila, Anna – Mejias-Molina, Cristina – Rafa, I, Marc Moliner – Munne, Antoni – Maria Pinto, Rosa – Pueyo-Ros, Josep – Robuste-Cartro, Jordi – Rusinol, Marta – Sanfeliu, Robert – Teichenne, Joan – Torrell, Helena – Corominas, Lluis – Borrego, Carles M.: The Catalan Surveillance Network of SARS-CoV-2 in Sewage: design, implementation, and performance. Scientific Reports, č. 1, zv. 12, 2022.
  • Li, Zhi-Hua – Wang, Jia-Xing – Lu, Meng – Zhang, Tianyu – Wang, Xiaochang C. – Li, Wen-Wei – Yu, Han-Qing: Hospital sewage treatment facilities witness the fighting against the COVID-19 pandemic. Journal of Environmental Management, č. 114728, zv. 309, 2022.
  • Calderon-Franco, David – Orschler, Laura – Lackner, Susanne – Agrawal, Shelesh – Weissbrodt, David G.: Monitoring SARS-CoV-2 in sewage: Toward sentinels with analytical accuracy. Science of the Total Environment, č. 150244, zv. 804, 2022.
  • Wilson, Nick – Mansoor, Osman D. – Boyd, Matthew J. – Kvalsvig, Amanda – Baker, Michael G.: We should not dismiss the possibility of eradicating COVID-19: comparisons with smallpox and polio. Bmj Global Health, č. 8, zv. 6, 2021.
  • Crank, K. – Chen, W. – Bivins, A. – Lowry, S. – Bibby, K.: Contribution of SARS-CoV-2 RNA shedding routes to RNA loads in wastewater. Science of the Total Environment, č. 2, zv. 806, 2022.
  • Chen, Wensi – Mei, Eric – Xie, Xing: Virus Stabilization with Enhanced Porous Superabsorbent Polymer (PSAP) Beads for Diagnostics and Surveillance. Acs Es&t Water, č. 12, zv. 2, str. 2378-2387, 2022.
  • Schmitz, Bradley W. – Innes, Gabriel K. – Prasek, Sarah M. – Betancourt, Walter Q. – Stark, Erika R. – Foster, Aidan R. – Abraham, Alison G. – Gerba, Charles P. – Pepper, Ian L.: Enumerating asymptomatic COVID-19 cases and estimating SARS-CoV-2 fecal shedding rates via wastewater-based epidemiology. Science of the Total Environment, č. 149794, zv. 801, 2021.
  • Alhama, Jose – Maestre, Juan P. – Angeles Martin, M. – Michan, Carmen: Monitoring COVID-19 through SARS-CoV-2 quantification in wastewater: progress, challenges and prospects. Microbial Biotechnology, 2021.
  • Sobsey, Mark D.: Absence of virological and epidemiological evidence that SARS-CoV-2 poses COVID-19 risks from environmental fecal waste, wastewater and water exposures. Journal of Water and Health, 2021.
  • Wang, Qiuyun – Liu, Lu: On the Critical Role of Human Feces and Public Toilets in the Transmission of COVID-19: Evidence from China. Sustainable Cities and Society, č. 103350, zv. 75, 2021.
  • Bonanno Ferraro, G. – Veneri, C. – Mancini, P. – Iaconelli, M. – Suffredini, E. – Bonadonna, L. – Lucentini, L. – Bowo-Ngandji, A. – Kengne-Nde, C. – Mbaga, D. S. – Mahamat, G. – Tazokong, H. R. – Ebogo-Belobo, J. T. – Njouom, R. – Kenmoe, S. – La Rosa, G.: A State-of-the-Art Scoping Review on SARS-CoV-2 in Sewage Focusing on the Potential of Wastewater Surveillance for the Monitoring of the COVID-19 Pandemic. Food and Environmental Virology, 2021.
  • La Rosa, Giuseppina – Brandtner, David – Mancini, Pamela – Veneri, Carolina – Ferraro, Giusy Bonanno – Bonadonna, Lucia – Lucentini, Luca – Suffredini, Elisabetta: Key SARS-CoV-2 Mutations of Alpha, Gamma, and Eta Variants Detected in Urban Wastewaters in Italy by Long-Read Amplicon Sequencing Based on Nanopore Technology. Water, č. 18, zv. 13, 2021.
  • Boeras, Ioana – Curtean-Banaduc, Angela – Banaduc, Doru – Cioca, Gabriela: Anthropogenic Sewage Water Circuit as Vector for SARS-CoV-2 Viral ARN Transport and Public Health Assessment, Monitoring and Forecasting-Sibiu Metropolitan Area (Transylvania/Romania) Study Case. International Journal of Environmental Research and Public Health, č. 18, zv. 19, 2022.
  • Guerrero-Esteban, Tamara – Gutierrez-Sanchez, Cristina – Villa-Manso, Ana M. – Revenga-Parra, Monica – Pariente, Felix – Lorenzo, Encarnacion: Sensitive SARS-CoV-2 detection in wastewaters using a carbon nanodot-amplified electrochemiluminescence immunosensor. Talanta, č. 123543, zv. 247, 2022.
  • Kim, Sooyeol – Kennedy, Lauren C. – Wolfe, Marlene K. – Criddle, Craig S. – Duong, Dorothea H. – Topol, Aaron – White, Bradley J. – Kantor, Rose S. – Nelson, Kara L. – Steele, Joshua A. – Langlois, Kylie – Griffith, John F. – Zimmer-Faust, Amity G. – McLellan, Sandra L. – Schussman, Melissa K. – Ammerman, Michelle – Wigginton, Krista R. – Bakker, Kevin M. – Boehm, Alexandria B.: SARS-CoV-2 RNA is enriched by orders of magnitude in primary settled solids relative to liquid wastewater at publicly owned treatment works. Environmental Science-water Research & Technology, č. 4, zv. 8, str. 757-770, 2022.
  • Twigg, Charlotte – Wenk, Jannis: Review and Meta-Analysis: SARS-CoV-2 and Enveloped Virus Detection in Feces and Wastewater. Chembioeng Reviews, č. 2, zv. 9, str. 129-145, 2022.
  • Duan, Lei – Zhang, Yizhe – Wang, Bin – Yu, Gang – Gao, Jianfa – Cagnetta, Giovanni – Huang, Cunrui – Zhai, Nannan: Wastewater surveillance for 168 pharmaceuticals and metabolites in a WWTP: Occurrence, temporal variations and feasibility of metabolic biomarkers for intake estimation. Water Research, č. 118321, zv. 216, 2022.
  • Mancusi, Andrea – Capuano, Federico – Girardi, Santa – Di Maro, Orlandina – Suffredini, Elisabetta – Di Concilio, Denise – Vassallo, Lucia – Cuomo, Maria Concetta – Tafuro, Maria – Signorelli, Daniel – Pierri, Andrea – Pizzolante, Antonio – Cerino, Pellegrino – La Rosa, Giuseppina – Proroga, Yolande Therese Rose – Pierri, Biancamaria: Detection of SARS-CoV-2 RNA in Bivalve Mollusks by Droplet Digital RT-PCR (dd RT-PCR). International Journal of Environmental Research and Public Health, č. 2, zv. 19, 2022.
  • Alhama, Jose – Maestre, Juan P. – Angeles Martin, M. – Michan, Carmen: Monitoring COVID-19 through SARS-CoV-2 quantification in wastewater: progress, challenges and prospects. Microbial Biotechnology, č. 6, zv. 15, str. 1719-1728, 2022.
  • Sobsey, Mark D.: Absence of virological and epidemiological evidence that SARS-CoV-2 poses COVID-19 risks from environmental fecal waste, wastewater and water exposures. Journal of Water and Health, č. 1, zv. 20, str. 126-138, 2022.
  • Bonanno Ferraro, G. – Veneri, C. – Mancini, P. – Iaconelli, M. – Suffredini, E. – Bonadonna, L. – Lucentini, L. – Bowo-Ngandji, A. – Kengne-Nde, C. – Mbaga, D. S. – Mahamat, G. – Tazokong, H. R. – Ebogo-Belobo, J. T. – Njouom, R. – Kenmoe, S. – La Rosa, G.: A State-of-the-Art Scoping Review on SARS-CoV-2 in Sewage Focusing on the Potential of Wastewater Surveillance for the Monitoring of the COVID-19 Pandemic. Food and Environmental Virology, č. 4, SI, zv. 14, str. 315-354, 2022.
M. KalúzM. KlaučoĽ. ČirkaM. Fikar: Flexy2: A Portable Laboratory Device for Control Engineering Education. V 12th IFAC Symposium Advances in Control Education, str. 159–164, 2019.
  • Počet citácií       7
  • Marin, Loreto – Vargas, Hector – Heradio, Ruben – de la Torre, Luis – Diaz, Jose Manuel – Dormido, Sebastian: Evidence-Based Control Engineering Education: Evaluating the LCSD Simulation Tool. IEEE Access, zv. 8, str. 170183-170194, 2020.
  • J. L. Villa – S. Sanchez: Implementing a Software-based Controller as a Strategy for Teaching Digital Control. V 2020 IX International Congress of Mechatronics Engineering and Automation (CIIMA), str. 1-6, 2020.
  • Opris, Ioana – Gogoase Nistoran, Daniela E. – Costinas, Sorina – Ionescu, Cristina S.: Rethinking power engineering education for Generation Z. Computer Applications in Engineering Education, č. 1, SI, zv. 29, str. 287-305, 2021.
  • Dusek, F. – Honc, D. – Mrazek, M.: RCDue - Laboratory System for Teaching Automation and Control - Concept of the system. V Proceedings of the 2021 23rd International Conference on Process Control, PC 2021, str. 249-254, 2021.
  • Sotelo, David – Sotelo, Carlos – Ramirez-Mendoza, Ricardo A. – Lopez-Guajardo, Enrique A. – Navarro-Duran, David – Nino-Juarez, Elvira – Vargas-Martinez, Adriana: Lab-Tec@Home: A Cost-Effective Kit for Online Control Engineering Education. Electronics, č. 6, zv. 11, 2022.
  • Oliveira, P. B. de Moura – Soares, Filomena – Cardoso, Alberto: Pocket-Sized Portable Labs: Control Engineering Practice Made Easy in Covid-19 Pandemic Times. Ifac Papersonline, č. 17, zv. 55, str. 150-155, 2022.
  • Pajpach, Martin – Haffner, Oto – Kucera, Erik – Drahos, Peter: Low-Cost Education Kit for Teaching Basic Skills for Industry 4.0 Using Deep-Learning in Quality Control Tasks. Electronics, č. 2, zv. 11, 2022.
F. Freeling – N. Alygizakis – P. C. von der Ohe – J. Slobodník – P. Oswald – R. Aalizadeh – Ľ. Čirka – N. S. Thomaidis – M. Scheurer: Occurrence and potential environmental risk of surfactants and their transformation products discharged by wastewater treatment plants. Science of The Total Environment, zv. 681, str. 475–487, 2019.
  • Počet citácií       35
  • Shen, Jian – Li, Xueying – Wang, Xinze – Feng, Jimeng – He, Xiaojuan – Jiang, Shiyi – Zhou, Ailing – Ouyang, Xiaoyan: Study on the Release Potential of BPA and Steroid Estrogens in the Sediments of Erhai Lake, a Typical Plateau Lake of China. Bulletin of Environmental Contamination and Toxicology, č. 6, zv. 105, str. 882-891, 2020.
  • Franz, S. – Bestetti, M. – Arab, H. – Carnevale Miino, M. – Abbà, A. – Collivignarelli, M.C.: Decolorization and biodegradability of a real pharmaceutical wastewater treated by H2O2-assisted photoelectrocatalysis on TiO2 meshes. Journal of Hazardous Materials, č. 121668, 2020.
  • Guo, Qiaorong – Wei, Dongbin – Zhao, Huimin – Du, Yuguo: Predicted no-effect concentrations determination and ecological risk assessment for benzophenone-type UV filters in aquatic environment. Environmental Pollution, č. 113460, zv. 256, 2020.
  • Schymanski, Emma L. – Baker, Nancy C. – Williams, Antony J. – Singh, Randolph R. – Trezzi, Jean-Pierre – Wilmes, Paul – Kolber, Pierre L. – Kruger, Rejko – Paczia, Nicole – Linster, Carole L. – Balling, Rudi: Connecting environmental exposure and neurodegeneration using cheminformatics and high resolution mass spectrometry: potential and challenges. Environmental Science-processes & Impacts, č. 9, zv. 21, str. 1426-1445, 2019.
  • Beckers, Liza-Marie – Brack, Werner – Dann, Janek Paul – Krauss, Martin – Mueller, Erik – Schulze, Tobias: Unraveling longitudinal pollution patterns of organic micropollutants in a river by non-target screening and cluster analysis. Science of the Total Environment, č. 138388, zv. 727, 2020.
  • Van Stempvoort, Dale R. – Brown, Susan J. – Smyth, Shirley Anne – Watershed Hydrology Ecology Res: Detections of alkyl-phenoxy-benzenesulfonates in municipal wastewater. Chemosphere, č. 126386, zv. 251, 2020.
  • Dyer, Scott D. – McAvoy, Drew C. – Belanger, Scott E. – Heinze, John – Stackhouse, Ricky – Serson, Hans – Versteeg, Donald J.: Correcting deficiencies to risk assessment of surfactants by Freeling et al. (2019). Science of the Total Environment, č. 135847, zv. 721, 2020.
  • Mudge, Stephen M. – Tropsch, Juergen – Beaudouin, Thierry – Sene, Christophe – Hormazabal, Horacio: Determining the Bio-Based Carbon Content of Surfactants. Journal of Surfactants and Detergents, č. 4, zv. 23, str. 771-780, 2020.
  • Li, Huiru – Wu, Shaohua – Yang, Chunping: Performance and Biomass Characteristics of SBRs Treating High-Salinity Wastewater at Presence of Anionic Surfactants. International Journal of Environmental Research and Public Health, č. 8, zv. 17, 2020.
  • Tisler, Selina – Liang, Chuanzhou – Carvalho, Pedro N. – Bester, Kai: Identification of more than 100 new compounds in the wastewater: Fate of polyethylene/polypropylene oxide copolymers and their metabolites in the aquatic environment. Science of the Total Environment, č. 143228, zv. 761, 2021.
  • Mairinger, Teresa – Loos, Martin – Hollender, Juliane: Characterization of water-soluble synthetic polymeric substances in wastewater using LC-HRMS/MS. Water Research, č. 116745, zv. 190, 2021.
  • Gosset, Antoine – Wiest, Laure – Fildier, Aurelie – Libert, Christine – Giroud, Barbara – Hammada, Myriam – Herve, Matthieu – Sibeud, Elisabeth – Vulliet, Emmanuelle – Polome, Philippe – Perrodin, Yves: Ecotoxicological risk assessment of contaminants of emerging concern identified by \\\'suspect screening\\\' from urban wastewater treatment plant effluents at a territorial scale. Science of the Total Environment, č. 146275, zv. 778, 2021.
  • Wiest, Laure – Giroud, Barbara – Assoumani, Azziz – Lestremau, Francois – Vulliet, Emmanuelle: A multi-family offline SPE LC-MS/MS analytical method for anionic, cationic and non-ionic surfactants quantification in surface water. Talanta, č. 122441, zv. 232, 2021.
  • Siddique, Azhar – Shahzad, Asif – Lawler, Jenny – Mahmoud, Khaled A. – Lee, Dae Sung – Ali, Nisar – Bilal, Muhammad – Rasool, Kashif: Unprecedented environmental and energy impacts and challenges of COVID-19 pandemic. Environmental Research, č. 110443, zv. 193, 2021.
  • Shen, Jian – Li, Xueying – Wang, Xinze – Feng, Jimeng – He, Xiaojuan – Jiang, Shiyi – Yang, Tong – Kong, Hainan: OCCURRENCE CHARACTERISTICS OF BPA AND STEROID ESTROGENS IN WATER AND SEDIMENT AND THEIR RELATIONSHIP WITH WATER QUALITY OF ERHAI LAKE, A TYPICAL PLATEAU LAKE IN CHINA. Fresenius Environmental Bulletin, č. 1, zv. 30, str. 654-671, 2021.
  • Langone, M. – Petta, L. – Cellamare, C. M. – Ferraris, M. – Guzzinati, R. – Mattioli, D. – Sabia, G.: SARS-CoV-2 in water services: Presence and impacts. Environmental Pollution, č. A, zv. 268, 2021.
  • Spaniol, Oliver – Bergheim, Marlies – Dawick, James – Koetter, Denise – McDonough, Kathleen – Schowanek, Diederik – Stanton, Kathleen – Wheeler, James – Willing, Andreas: Comparing the European Union System for the Evaluation of Substances (EUSES) environmental exposure calculations with monitoring data for alkyl sulphate surfactants. Environmental Sciences Europe, č. 1, zv. 33, 2021.
  • Collivignarelli, Maria Cristina – Abba, Alessandro – Miino, Marco Carnevale – Arab, Hamed – Bestetti, Massimiliano – Franz, Silvia: Decolorization and biodegradability of a real pharmaceutical wastewater treated by H2O2-assisted photoelectrocatalysis on TiO2 meshes. Journal of Hazardous Materials, č. 121668, zv. 387, 2020.
  • Sasi, Subha – Rayaroth, Manoj P. – Aravindakumar, Charuvila T. – Aravind, Usha K.: Alcohol ethoxysulfates (AES) in environmental matrices. Environmental Science and Pollution Research, č. 26, SI, zv. 28, str. 34167-34186, 2021.
  • Lapworth, Dan J. – Maurice, Louise D. – Terzic, Josip – Reberski, Jasmina Lukac: Emerging organic contaminants in karst groundwater: A global level assessment. Journal of Hydrology, č. 127242, zv. 604, 2022.
  • Berg, Michael – Giger, Walter – Hollender, Juliane – Lara-Martin, Pablo A. – Schinkel, Lena: Synthetic surfactants in Swiss sewage sludges: Analytical challenges, concentrations and per capita loads. Science of the Total Environment, č. 151361, zv. 808, 2022.
  • Hajirasouliha, Farzaneh – Yang, Hua – Wu, Qiang – Zabiegaj, Dominika: Can optical fiber compete with profile analysis tensiometry in critical micelle concentration measurement?. Zeitschrift Fur Physikalische Chemie-international Journal of Research in Physical Chemistry & Chemical Physics, č. 12, zv. 235, str. 1767-1775, 2021.
  • Qiang, Shuping – Mohamed, Fahim – Mackenzie, Lorraine – Roberts, Michael S.: Rapid determination of polyethoxylated tallow amine surfactants in human plasma by LC-MSMS. Talanta, č. 124115, zv. 254, 2023.
  • Groh, Ksenia J. – Arp, Hans Peter H. – MacLeod, Matthew – Wang, Zhanyun: Assessing and managing environmental hazards of polymers: historical development, science advances and policy options. Environmental Science-processes & Impacts, č. 1, zv. 25, str. 10-25, 2023.
  • Holmes, Christopher M. – Maltby, Lorraine – Sweeney, Paul – Thorbek, Pernille – Otte, Jens C. – Marshall, Stuart: Heterogeneity in biological assemblages and exposure in chemical risk assessment: Exploring capabilities and challenges in methodology with two landscape-scale case studies. Ecotoxicology and Environmental Safety, č. 114143, zv. 246, 2022.
  • Okoye, Charles Obinwanne – Nyaruaba, Raphael – Ita, Richard Ekeng – Okon, Samuel Ukpong – Addey, Charles Izuma – Ebido, Chike C. – Opabunmi, Adebayo Oluwole – Okeke, Emmanuel Sunday – Chukwudozie, Kingsley Ikechukwu: Antibiotic resistance in the aquatic environment: Analytical techniques and interactive impact of emerging contaminants. Environmental Toxicology and Pharmacology, č. 103995, zv. 96, 2022.
  • Arora, U. – Khuntia, H. K. – Chanakya, H. N. – Kapley, A.: Surfactants: combating the fate, impact, and aftermath of their release in the environment. International Journal of Environmental Science and Technology, 2022.
  • Sharghi, Elham Abdollahzadeh – Davarpanah, Leila: Optimization of chemical coagulation-flocculation process of detergent manufacturing plant wastewater treatment for full scale applications: a case study. Desalination and Water Treatment, zv. 262, str. 38-53, 2022.
  • Montes, Rosa – Mendez, Sandra – Carro, Nieves – Cobas, Julio – Alves, Nelson – Neuparth, Teresa – Santos, Miguel Machado – Quintana, Jose Benito – Rodil, Rosario: Screening of Contaminants of Emerging Concern in Surface Water and Wastewater Effluents, Assisted by the Persistency-Mobility-Toxicity Criteria. Molecules, č. 12, zv. 27, 2022.
  • Paszkiewicz, Monika – Godlewska, Klaudia – Lis, Hanna – Caban, Magda – Bia, Anna – Stepnowski, Piotr: Advances in suspect screening and non-target analysis of polar emerging contaminants in the environmental monitoring. Trac-trends in Analytical Chemistry, č. 116671, zv. 154, 2022.
  • Kumar, Ravinder – Vuppaladadiyam, Arun K. – Antunes, Elsa – Whelan, Anna – Fearon, Rob – Sheehan, Madoc – Reeves, Louise: Emerging contaminants in biosolids: Presence, fate and analytical techniques. Emerging Contaminants, zv. 8, str. 162-194, 2022.
  • Liang, Weigang – Wang, Xiaolei – Wu, Aiming – Zhang, Xiao – Niu, Lin – Wang, Junyu – Wang, Xia – Zhao, Xiaoli: Application of combined QSAR-ICE models in calculation of hazardous concentrations for linear alkylbenzene sulfonate. Chemosphere, č. 134400, zv. 300, 2022.
  • Cross, Richard – Matzke, Marianne – Spurgeon, Dave – Diez, Maria – Andres, Veronica Gonzalez – Galvez, Elena Cerro – Esponda, Maria Fernanda – Belinga-Desaunay-Nault, Marie-France – Lynch, Iseult – Jeliazkova, Nina – Svendsen, Claus: Assessing the similarity of nanoforms based on the biodegradation of organic surface treatment chemicals. Nanoimpact, č. 100395, zv. 26, 2022.
  • Wiest, Laure – Giroud, Barbara – Fieu, Maeva – Assoumani, Azziz – Lestremau, Francois – Vulliet, Emmanuelle: Ultrasound-assisted sample preparation for simultaneous extraction of anionic, cationic and non-ionic surfactants in sediment. Talanta, č. 123220, zv. 241, 2022.
  • Abidnejad, Roozbeh – Beaumont, Marco – Tardy, Blaise L. – Mattos, Bruno D. – Rojas, Orlando J.: Superstable Wet Foams and Lightweight Solid Composites from Nanocellulose and Hydrophobic Particles. Acs Nano, č. 12, zv. 15, str. 19712-19721, 2021.
M. KalúzĽ. ČirkaM. Fikar: Flexy: An Open-source Device for Control Education. Editor(i): Cardoso, A., V 13th APCA International Conference on Automatic Control and Soft Computing, Nova Gráfica, Univesrity of the Azores, Ponta Delgada, Portugal, str. 37–42, 2018.
  • Počet citácií       7
  • Demenkov, M.: Experimental Investigation of Viscoelastic Hysteresis in a Flex Sensor. Trends in Mathematics, zv. 11, str. 231-235, 2019.
  • Oravec, J. – Holaza, J. – Horváthová, M. – Nguyen, N.A. – Kvasnica, M. – Bakošová, M.: Convex-lifting-based robust control design using the tunable robust invariant sets. European Journal of Control, zv. 49, str. 44-52, 2019.
  • Takács, G. – Konkoly, T. – Gulan, M.: OptoShield: A Low-Cost Tool for Control and Mechatronics Education. V 2019 12th Asian Control Conference, ASCC 2019, str. 1001-1006, 2019.
  • Takács, G. – Gulan, M. – Bavlna, J. – Köplinger, R. – Kováč, M. – Mikuláš, E. – Zarghoon, S. – Salíni, R.: HeatShield: A low-cost didactic device for control education simulating 3d printer heater blocks. V IEEE Global Engineering Education Conference, EDUCON, str. 374-383, 2019.
  • Demenkov, M.: Studying aeroelastic oscillations with tensoresistor and Arduino. V AIP Conference Proceedings, 2018.
  • Afonso, Ricardo – Soares, Filomena – de Moura Oliveira, P. B.: Innovative Teaching/Learning Methodologies in Control, Automation and Robotics: a Short Review. V 2021 4th International Conference of the Portuguese Society for Engineering Education (cispee), 2021.
  • Horvathova, Michaela – Oravec, Juraj – Bakosova, Monika: Real-Time Convex-lifting-based Robust Control Using Approximated Control Law. V 2020 59th IEEE Conference on Decision and Control (CDC), str. 2160-2165, 2020.
A. Vasičkaninová – M. Bakošová – Ľ. ČirkaM. KalúzJ. Oravec: Robust Controller Design for a Laboratory Heat Exchanger. Applied Thermal Engineering, zv. 128, str. 1297–1309, 2018.
  • Počet citácií       13
  • Petar Sabev Varbanov – Xue Xiu Jia – David John Kukulka – Xia Liu – Jiří Jaromír Klemeš: Emission minimisation by improving heat transfer, energy conversion, CO2 integration and effective training. Applied Thermal Engineering, zv. 131, str. 531–539, 2018.
  • Bartecki, Krzysztof: Rational Transfer Function Model for a Double-Pipe Parallel-Flow Heat Exchanger. Symmetry-basel, č. 8, zv. 12, 2020.
  • LiborPekař: Advanced Analytic and Control Techniques for Thermal Systems with Heat Exchangers, Kapitola: Chapter 12 - Controller design and tuning of a delayed heat exchanger plant in a robust sense. str. 263-284, 2020.
  • Greco, Adriana – Gundabattini, Edison – Solomon, Darius Gnanaraj – Rassiah, Raja Singh – Masselli, Claudia: A Review on Geothermal Renewable Energy Systems for Eco-Friendly Air-Conditioning. Energies, č. 15, zv. 15, 2022.
  • Zhu, Jianzhong – Wu, Xiao – Shen, Jiong: Practical disturbance rejection control for boiler-turbine unit with input constraints. Applied Thermal Engineering, č. 114184, zv. 161, 2019.
  • Sallam, Omar Khaled – Azar, Ahmad Taher – Guaily, Amr – Ammar, Hossam Hassan: Tuning of PID Controller Using Particle Swarm Optimization for Cross Flow Heat Exchanger Based on CFD System Identification. V Proceedings of the International Conference on Advanced Intelligent Systems and Informatics 2019, str. 300-312, 2020.
  • Chen, Yilong – de Oliveira, Mauricio C.: An Alternative Algorithm to the D-K Iterations for Robust Control Design. IEEE Control Systems Letters, č. 1, zv. 5, str. 115-120, 2021.
  • Bartecki, Krzysztof: An Approximate Transfer Function Model for a Double-Pipe Counter-Flow Heat Exchanger. Energies, č. 14, zv. 14, 2021.
  • Jin, Hao-Zhe – Gu, Yong – Ou, Guo-Fu: Corrosion risk analysis of tube-and-shell heat exchangers and design of outlet temperature control system. Petroleum Science, č. 4, zv. 18, str. 1219-1229, 2021.
  • Yong Gu – Hao-Zhe Jin – Guo-Fu Ou: Corrosion risk analysis of tube-and-shell heat exchangers and design of outlettemperature control system. Petroleum Science, 2021.
  • Sit, M. L. – Patsiuk, I, V. – Juravliov, A. A. – Burciu, I, V. – Timchenko, V, D.: Control of Heat Exchanger with Variable Heat Transfer Surface Area. Problemele Energeticii Regionale, č. 1, str. 90-101, 2019.
  • Wen, Yalan – Wang, Ling – Peng, Weiqing – Menhas, Muhammad Ilyas – Qian, Lin: Application of Intelligent Virtual Reference Feedback Tuning to Temperature Control in a Heat Exchanger. V Intelligent Computing and Internet of Things, Pt Ii, str. 311-320, 2018.
  • Bartecki, Krzysztof: Rational Transfer Function Model for a Double-Pipe Parallel-Flow Heat Exchanger. Symmetry-basel, č. 8, zv. 12, 2020.
M. KalúzĽ. Čirka – R. Valo – M. Fikar: Lab of Things: A Network-Based I/O Services for Laboratory Experimentation. V Preprints of the 20th IFAC World Congress, Toulouse, France, zv. 20, str. 14028–14033, 2017.
  • Počet citácií       2
  • M. D. Prieto – Á. F. Sobrino – L. R. Soto – D. Romero – P. F. Biosca – L. R. Martínez: Active Learning based Laboratory towards Engineering Education 4.0. V 2019 24th IEEE International Conference on Emerging Technologies and Factory Automation (ETFA), str. 776-783, 2019.
  • Juraj Oravec – Monika Bakošová – Lenka Galčíková – Michal Slávik – Michaela Horváthová – Alajos Mészáros: Soft-constrained robust model predictive control of a plate heat exchanger: Experimental analysis. Energy, zv. 180, str. 303 - 314, 2019.
P. BakaráčM. KalúzĽ. Čirka: Design and Development of a Low-cost Inverted Pendulum for Control Education. Editor(i): M. Fikar and M. Kvasnica, V Proceedings of the 21st International Conference on Process Control, Slovak Chemical Library, Štrbské Pleso, Slovakia, str. 398–403, 2017.
  • Počet citácií       4
  • Takács, G. – Konkoly, T. – Gulan, M.: OptoShield: A Low-Cost Tool for Control and Mechatronics Education. V 2019 12th Asian Control Conference, ASCC 2019, str. 1001-1006, 2019.
  • Takács, G. – Gulan, M. – Bavlna, J. – Köplinger, R. – Kováč, M. – Mikuláš, E. – Zarghoon, S. – Salíni, R.: HeatShield: A low-cost didactic device for control education simulating 3d printer heater blocks. V IEEE Global Engineering Education Conference, EDUCON, str. 374-383, 2019.
  • E. Philip – S. Golluri: Implementation of an Autonomous Self-Balancing Robot Using Cascaded PID Strategy. V 2020 6th International Conference on Control, Automation and Robotics (ICCAR), str. 74-79, 2020.
  • Kao, Sho-Tsung – Ho, Ming-Tzu: Balance Control of a Configurable Inverted Pendulum on an Omni-Directional Wheeled Mobile Robot. Applied Sciences-basel, č. 20, zv. 12, 2022.
A. Vasičkaninová – M. Bakošová – Ľ. ČirkaM. Kalúz: Robust Controller Design for a Heat Exchanger. Chemical Engineering Transactions, zv. 52, str. 247–252, 2016.
  • Počet citácií       4
  • Wu Xiao – Huili Ran – Xiaobin Jiang – Xiangcun Li – Gaohong He: Control Schemes of Hybrid Distillation-vapor Permeation Process for Ethylene/Ethane Separations. CHemical engineering transactions, zv. 61, str. 61-66, 2017.
  • Mehta, A. – Shah, A. – Shah, D.: Higher order networked sliding mode controller for heat exchanger connected via data communication network. European Journal of Control, zv. 58, str. 301-314, 2021.
  • Horváthová, Michaela – Ishihara, Nijihiko – Oravec, Juraj – Chida, Yuichi: Robust Setpoint Tracking of a Linear System with Discrete Actuators. V 2021 23rd International Conference on Process Control (PC), str. 229-236, 2021.
  • Bhawesh Prasad – Raj Kumar – Manmohan Singh: Performance Analysis of Heat Exchanger System Using Deep Learning Controller. International Journal of Electrical and Electronics Research, č. 2, zv. 10, str. 327-334, 2022.
A. MészárosĽ. Čirka – M. Bakošová – A. Vasičkaninová: On Stability and Controllability of Processes with Internal Recycle. Professor Dr Jiří Klemeš: Celebration of the Jubilee in Science and Engineering, Chemical Engineering Transactions, č. 45, str. 1735–1740, 2015.
  • Počet citácií       1
  • Varbanov, Petar Sabev – Lam, Hon Loong – Nemet, Andreja: Professor Dr Jiri Jaromir Klemes: Celebration of the Jubilee in Science and Engineering. V Pres15: Process Integration, Modelling and Optimisation for Energy Saving and Pollution Reduction, str. 1717-1722, 2015.
A. Vasičkaninová – M. Bakošová – Ľ. ČirkaM. Kalúz: Comparison of Robust Control Techniques for Use in Continuous Stirred Tank Reactor Control. Editor(i): Fikar, M., V Proceedings of the 8th IFAC Symposium on Robust Control Design, Elsevier, Bratislava, Slovak Republic, č. 8, str. 284–289, 2015.
  • Počet citácií       6
  • Matušů, R.: ROBUST STABILIZATION OF A CONTINUOUS STIRRED TANK REACTORMODEL.. Annals of DAAAM & Proceedings, zv. 27, str. 147-150, 2016.
  • Eleftherios Vlahakis – George Halikias: Temperature and concentration control of exothermic chemical processes in continuous stirred tank reactors. Transactions of the Institute of Measurement and Control, str. 1-11, 2019.
  • Radek Matusu: Robust Stabilization of a Continuous Stirred tank Reactor Model. Annals of DAAAM & Proceedings Publisher: DAAAM International Vienna, str. 147, 2017.
  • M. Kissai – B. Monsuez – D. Martinez – X. Mouton – A. Tapus: Robust Control for Over-Actuated Vehicles. V 2019 IEEE Conference on Control Technology and Applications (CCTA), str. 822-829, 2019.
  • Ehsan Shakeri – Gholamreza Latif-Shabgahi – Amir Esmaeili Abharian: Design of an intelligent stochastic model predictive controller for a continuous stirred tank reactor through a Fokker-Planck observer. Transactions of the Institute ofMeasurement and Control, č. 10, zv. 40, str. 3010-3022, 2018.
  • L. Pekař – B. Şenol – R. Matušů: Robust PI Control of Interval Plants With Gain and Phase Margin Specifications: Application to a Continuous Stirred Tank Reactor. IEEE Access, zv. 8, str. 145372-145380, 2020.
J. OravecM. KalúzĽ. Čirka – M. Bakošová – M. Fikar: WebPIDDESIGN for Robust PID Controller Design. Editor(i): M. Fikar and M. Kvasnica, V Proceedings of the 20th International Conference on Process Control, Slovak Chemical Library, Štrbské Pleso, Slovakia, str. 393–399, 2015.
  • Počet citácií       1
  • Amini, F. – Khaloozadeh, H.: Robust stabilization of multilinear interval plants by Takagi–Sugeno fuzzy controllers. Applied Mathematical Modelling, zv. 51, str. 329 - 340, 2017.
I. Špánik – Ľ. Čirka – P. Májek: Classification of wine distillates using multivariate statistical methods based on their direct GC-MS analysis. Chemical Papers, č. 3, zv. 69, str. 395–401, 2015.
  • Počet citácií       4
  • Raber, Alexandra G. – Peachey-Stoner, Reuben J. – Cessna, Stephen G. – Siderhurst, Matthew S.: Headspace GC-MS analysis of differences in intra- and interspecific Terpene profiles of Picea pungens Engelm. and P. abies (L.) Karst. Phytochemistry, č. 112541, zv. 181, 2021.
  • Korban, Anton – Charapitsa, Siarhei – Cabala, Radomir – Sobolenko, Lidia – Egorov, Vladimir – Sytova, Svetlana: Advanced GC-MS method for quality and safety control of alcoholic products. Food Chemistry, č. 128107, zv. 338, 2021.
  • Jin, Xinyu – Wu, Shimin – Yu, Wenjuan – Xu, Xinyi – Huang, Mingquan – Tang, Yongfang – Yang, Zhenyu: Wine Authentication Using Integration Assay of MIR, NIR, E-tongue, HS-SPME-GC-MS, and Multivariate Analyses: A Case Study for a Typical Cabernet Sauvignon Wine. Journal of Aoac International, č. 4, zv. 102, str. 1174-1180, 2019.
  • Carter, James F.: Alcoholic Beverages II-Spirits, Beer, Sake and Cider. V Food Forensics: Stable Isotopes As a Guide To Authenticity and Origin, str. 207-238, 2017.
M. Kalúz – J. García-Zubía – M. FikarĽ. Čirka: A Flexible and Configurable Architecture for Automatic Control Remote Laboratories. IEEE Transactions on Learning Technologies, č. 3, zv. 8, str. 299–310, 2015.
  • Počet citácií       65
  • Letowski, Bastien – Lavayssiere, Camille – Larroque, Benoit – Schroeder, Martin – Luthon, Franck: A Fully Open Source Remote Laboratory for Practical Learning. Electronics, č. 11, zv. 9, 2020.
  • Huba, M. – Rovanova, L.: Impact of the new learning environment on traditional engineering courses. V Emerging eLearning Technologies and Applications (ICETA), 2014 IEEE 12th International Conference on, str. 175-180, 2014.
  • R. J. Costa – D. E. Pinho – G. R. Alves: Using embedded instruments to design weblabs: An FPGA-embedded oscilloscope based on the IEEE1451.0 Std.. V 3rd Experiment International Conference (exp.at'15), str. 41-46, 2015.
  • Vogel-Heuser, B. – Rehberger, S. – Gramss, S. – Mayer, F.: Integrating Lab-size Automation Plants into a Web-based E-learning Environment for Teaching C Programming in Teams. IFAC-PapersOnLine Journal (IBCE15 Brescia), č. 29, zv. 48, str. 295 - 300, 2015.
  • Mbihi, J.: A Flexible Multimedia Workbench for Digital Control of Input-Delay Servo Systems. Journal of Computer Science and Control Systems, 2015.
  • W. B. Williams – A. F. Browne: Development of a remote laboratory architecture for Mission Critical Operations instruction. V SoutheastCon 2016, str. 1-4, 2016.
  • I. Ruano – P. Cano – J. Gamez – J. Gomez: Advanced LMS Integration of SCORM Web Laboratories. IEEE ACCESS, č. 99, zv. PP, str. 1-1, 2016.
  • P. Bistak – M. Huba: Three-Tank Virtual Laboratory for Input Saturation Control Based on Matlab. V IFAC-PapersOnLine, 11th IFAC Symposium on Advances in Control Education ACE 2016, str. 207 - 212, 2016.
  • K. Žáková: Mlabwrap based remote control of thermo-optical plant. V Emerging eLearning Technologies and Applications (ICETA), 2014 IEEE 12th International Conference on, str. 517-521, 2014.
  • Žáková, K.: Online Control of TOS1A Thermo-Optical Plant Using OpenModelica. Springer International Publishing, V CONTROLO 2016 (Proceedings of the 12th Portuguese Conference on Automatic Control), str. 869-878, 2016.
  • Langmann, R. – Rojas-Peña, L.: PLCs as industry 4.0 components in laboratory applications. International Journal of Online Engineering, č. 7, zv. 12, str. 37-44, 2016.
  • Janssen, B. – Wehner, P. – Goehringer, D. – Huebner, M.: Development of Advanced Driver Assistance Systems using LabVIEW and a Car Simulator. V Workshop on Embedded and Cyber-Physical Systems Education, 2016.
  • Sendoya-Losada, D.F. – Silva, P. – Waltero, H.P.: Automatic wiring system applied to the training module M2CI. ARPN Journal of Engineering and Applied Sciences, č. 19, zv. 11, str. 11503-11513, 2016.
  • González, I. – Calderón, A. J. – Mejías, A. – Andújar, J. M.: Novel Networked Remote Laboratory Architecture for Open Connectivity Based on PLC-OPC-LabVIEW-EJS Integration. Application in Remote Fuzzy Control and Sensors Data Acquisition. Sensors, č. 11, zv. 16, str. 1822, 2016.
  • R. Hans: Remote Computer Laboratories: Opportunities for South African Universities. V International Conference on Learning and Teaching in Computing and Engineering (LaTICE), str. 76-80, 2016.
  • Huba, M. – Kozák, Š.: From E-learning to Industry 4.0. V 14th IEEE International Conference on Emerging eLearning Technologies and Applications, ICETA 2016, Starý Smokovec, The High Tatras, Slovakia, str. 103-108, 2016.
  • J. M. M. Quintero – P. E. N. Ortiz – D. M. O. Martinez – L. F. C. Alfonso: Low cost remote instructional laboratory for control systems courses. V International Conference on Interactive Mobile Communication, Technologies and Learning (IMCL), str. 78-82, 2016.
  • Wan Han – Gao Xiaopeng – Liu Qian: Hybrid teaching mode for laboratory-based remote education of computer structure course. V 2016 IEEE Frontiers in Education Conference (FIE), str. 1-8, 2016.
  • Hu, Wenshan – Lei, Zhongcheng – Zhou, Hong – Liu, Guo-Ping – Deng, Qijun – Zhou, Dongguo – Liu, Zhi-Wei: Plug-in Free Web-Based 3-D Interactive Laboratory for Control Engineering Education. IEEE Transactions on Industrial Electronics, č. 5, zv. 64, str. 3808-3818, 2017.
  • P. Dolezel – M. Dvorak: Computer game as a tool for machine learning education. V 21st International Conference on Process Control (PC), str. 104-108, 2017.
  • P. Bisták – M. Huba: Simulation tool for time sub-optimal control of time-delayed systems with input saturation. V 4th Experiment@International Conference, str. 275-279, 2017.
  • P. Di Giamberardino – M. Temperini: Adaptive access to robotic learning experiences in a remote laboratory setting. V 18th International Carpathian Control Conference (ICCC), str. 565-570, 2017.
  • May, D. – Sadiki, A. – Pleul, Ch. – Tekkaya, A. E.: Engineering Education 4.0: Excellent Teaching and Learning in Engineering Sciences, Kapitola: Transnational Connected Learning and Experimentation -- Using Live Online Classes and Remote Labs for Preparing International Engineering Students for an International Working World. Springer International Publishing, str. 373--393, 2016.
  • Bistak, P. – Halas, M. – Huba, M.: Modern Control Systems via Virtual and Remote Laboratory Based on Matlab. Ifac Papersonline, č. 1, zv. 50, str. 13498-13503, 2017.
  • Jaziri, Ibtihel – Charaabi, Lotfi – Jelassi, Khaled: Remote web-based control laboratories using embedded Linux and field-programmable gate array. Proceedings of the Institution of Mechanical Engineers Part I-journal of Systems and Control Engineering, č. 9, zv. 232, str. 1146-1154, 2018.
  • Bistak, Pavol – Huba, Mikulas: Three-Tank Virtual Laboratory for Dynamical Feedforward Control Based on Matlab. V 2017 19th International Conference on Electrical Drives and Power Electronics (edpe), str. 318-323, 2017.
  • Maldonado, J.J. – Garrido, R. – Castro, G.: A Methodology to Teach Mechatronics through Building a Hands-on Platform. V 15th International Conference on Electrical Engineering, Computing Science and Automatic Control, CCE 2018, 2018.
  • Angrisani, L. – Cesaro, U. – DaRco, M. – Grillo, D. – Tocchi, A.: IOT Enabling Measurement Applications in Industry 4.0: Platform for Remote Programming ATES. V 2018 Workshop on Metrology for Industry 4.0 and IoT, MetroInd 4.0 and IoT 2018 - Proceedings, str. 40-45, 2018.
  • Jing, Q. – Yu-Man, N. – Yong-Ping, W. – Ping-Guo, C. – Jian-He, L. – Quan-Jun, S.: Dynamic features extraction system of live pests in farmland. V Proceedings - 2018 33rd Youth Academic Annual Conference of Chinese Association of Automation, YAC 2018, str. 1141-1146, 2018.
  • Sendoya-Losada, D.F. – Silva, P.T. – Marín, F.B.: Remote laboratories using the training module M2CI. ARPN Journal of Engineering and Applied Sciences, č. 5, zv. 13, str. 1668-1673, 2018.
  • Zhong, C.: Mechanical and electrical automatic control system based on plc. International Journal of Mechatronics and Applied Mechanics, č. 3, zv. 2018, str. 150-156, 2018.
  • P. Bisták: Disturbance Analysis Virtual Laboratory for PID Controllers with Higher Derivative Degrees. V 2018 16th International Conference on Emerging eLearning Technologies and Applications (ICETA), str. 69-74, 2018.
  • A. N. Kazimirov: Education at University and Industry 4.0. V 2018 Global Smart Industry Conference (GloSIC), str. 1-6, 2018.
  • Ali, Ahmed Hadi – Mohammad, Omer K. Jasim: Impacting of the E- Platforms on the 4.0th Industrial Educational Revolution. ACM, New York, NY, USA, V Proceedings of the 9th International Conference on Information Systems and Technologies, Cairo, Egypt, str. 29:1 - 29:7, 2019.
  • Bonavolonta, F. – D'Arco, M. – Liccardo, A. – Tamburis, O.: Remote laboratory design and implementation as a measurement and automation experiential learning opportunity. IEEE Instrumentation and Measurement Magazine, č. 6, zv. 22, str. 62-67, 2019.
  • Bistak, P. – Huba, M.: Analysis of higher derivative degree PID controllers via virtual laboratory. V 27th Mediterranean Conference on Control and Automation, MED 2019 - Proceedings, str. 356-361, 2019.
  • Bistak, P.: 3D Three-Tank remote laboratory based on matlab and websockets. V Proceedings of the 2019 5th Experiment at International Conference, exp.at 2019, str. 85-89, 2019.
  • Halim Bin Embong, A. – Akbar, M.A. – Rashid, M.M.: Design and development of multipurpose educational and research platform (MERP) for learning control and iot technologies. Journal of Engineering Science and Technology, č. 2, zv. 14, str. 747-762, 2019.
  • Machado, G.S. – Silva, Y.M.L.R. – De Lucena, V.F.: A tool for the automatic selection of mechatronics remote laboratories based on their actual effective costs. V Proceedings - Frontiers in Education Conference, FIE, 2019.
  • Chaudhari, S.J. – Patil, P.: Dynamic features extraction system of pets on plants processing. V Proceedings of the 3rd International Conference on Computing Methodologies and Communication, ICCMC 2019, str. 1201-1205, 2019.
  • Angrisani, L. – Cesaro, U. – D'Arco, M. – Tamburis, O.: Measurement applications in industry 4.0: The case of an IoT-oriented platform for remote programming of automatic test equipment. Acta IMEKO, č. 2, zv. 8, str. 62-69, 2019.
  • Shao, Shifen – Zhang, Kaisheng: An Improved Multisensor Self-Adaptive Weighted Fusion Algorithm Based on Discrete Kalman Filtering. Complexity, č. 9673764, zv. 2020, 2020.
  • Lucia, Oscar – Martins, Joao – Ibrahim, Yousef – Umetani, Kazuhiro – Gomes, Luis – Hiraki, Eiji – Zeroug, Houcine – Manic, Milos: Industrial Electronics Education: Past, Present, and Future Perspectives. IEEE Industrial Electronics Magazine, č. 1, zv. 15, str. 140-154, 2021.
  • Chen, Joy Iong-Zong: The implementation to intelligent linkage service over AIoT hierarchical for material flow management. Journal of Ambient Intelligence and Humanized Computing, č. MJ6QP, 2020.
  • X. Zhou – W. Hu – G. -P. Liu: React-Native Based Mobile App for Online Experimentation. V 2020 39th Chinese Control Conference (CCC), str. 4400-4405, 2020.
  • Z. Lei – H. Zhou – W. Hu – Q. Deng – D. Zhou – Z. -W. Liu – X. Gao: 3-D Interactive Control Laboratory for Classroom Demonstration and Online Experimentation in Engineering Education. IEEE Transactions on Education, str. 1-7, 2020.
  • Maldonado, J – Garrido, R – Castro, G: Real-time control prototype and its use in Automatic Control courses.. Memorias del Congreso Nacional de Control Automático, 2020.
  • Campoverde-Molina, Milton – Lujan-Mora, Sergio – Valverde, Llorenc: Systematic literature review on software architecture of educational websites. IET Software, č. 4, zv. 15, str. 239-259, 2021.
  • Chamunorwa, Tinashe – Modran, Horia Alexandru – Ursutiu, Doru – Samoila, Cornel – Hedesiu, Horia: Reconfigurable Wireless Sensor Node Remote Laboratory Platform with Cloud Connectivity. Sensors, č. 19, zv. 21, 2021.
  • Guo, Liping – Vengalil, Madhav – Abdul, Nauman Moiz Mohammed – Wang, Kezhou: Design and implementation of virtual laboratory for a microgrid with renewable energy sources. Computer Applications in Engineering Education, 2000.
  • Lei, Zhongcheng – Zhou, Hong – Hu, Wenshan – Deng, Qijun – Zhou, Dongguo – Liu, Zhi-Wei – Gao, Xingran: 3-D Interactive Control Laboratory for Classroom Demonstration and Online Experimentation in Engineering Education. IEEE Transactions on Education, č. 3, zv. 64, str. 276-282, 2021.
  • Scaffidi, C. – DIstefano, S.: A Remotely Configurable Hardware/Software Architecture for a Distance IoT Lab. V Proceedings - 2021 IEEE International Conference on Smart Computing, SMARTCOMP 2021, str. 341-346, 2021.
  • Fukumoto, H. – Yamaguchi, T. – Ishibashi, M. – Furukawa, T.: Developing a Remote Laboratory System of Stepper Motor for Learning Support. IEEE Transactions on Education, č. 3, zv. 64, str. 292-298, 2021.
  • Chen, J.I.-Z.: The implementation to intelligent linkage service over AIoT hierarchical for material flow management. Journal of Ambient Intelligence and Humanized Computing, č. 2, zv. 12, str. 2207-2219, 2021.
  • Dudić, S. – Šulc, J. – Reljić, V. – Bajči, B. – Šešlija, D. – Milenković, I.: Automatic device for remote measuring of circularity: Development and implementation in education courses. Journal of Engineering Research (Kuwait), č. 4 A, zv. 9, str. 235-245, 2021.
  • Kazimirov, A.N.: Monitoring the state of technological equipment in the application to the educational process. V Proceedings - 2021 International Conference on Industrial Engineering, Applications and Manufacturing, ICIEAM 2021, str. 887-892, 2021.
  • Guo, L. – Vengalil, M. – Abdul, N.M.M. – Wang, K.: Design and implementation of virtual laboratory for a microgrid with renewable energy sources. Computer Applications in Engineering Education, 2021.
  • Lei, Zhongcheng – Zhou, Hong – Hu, Wenshan – Liu, Guo-Ping: Toward an international platform: A web-based multi-language system for remote and virtual laboratories using react framework. Heliyon, č. 10, zv. 8, 2022.
  • Xue, Liwei – Hu, Wenshan – Liu, Guo-Ping: Learning with remote laboratories: Designing control algorithms with both block diagrams and customized C code schemes. Computer Applications in Engineering Education, č. 5, zv. 30, str. 1561-1576, 2022.
  • Lavayssiere, Camille – Larroque, Benoit – Luthon, Franck: Laborem Box: A scalable and open source platform to design remote lab experiments in electronics. Hardwarex, č. e00301, zv. 11, 2022.
  • Chacon, Jesus – Besada-Portas, Eva – Garcia-Perez, Lia – Lopez-Orozco, Jose A.: Efficient deployment of remote laboratories with TwinCAT-PLCs and EjsS Plugins. Ifac Papersonline, č. 17, zv. 55, str. 326-331, 2022.
  • Taj, Amine Moulay – Chacon, Jesus – de la Torre, Luis – Malaoui, Abdessamad – Dormido, Sebastian: An architecture to implement generalized sampling in Online Laboratories. Ifac Papersonline, č. 17, zv. 55, str. 332-337, 2022.
  • Guo, Liping – Abdul, Nauman Moiz Mohammed – Vengalil, Madhav – Wang, Kezhou – Santuzzi, Alecia: Engaging Renewable Energy Education Using a Web-Based Interactive Microgrid Virtual Laboratory. IEEE ACCess, zv. 10, str. 60972-60984, 2022.
  • Shu, Beibei – Arnarson, Halldor – Solvang, Bjorn – Kaarlela, Tero – Pieska, Sakari: Platform independent interface for programming of industrial robots. V 2022 IEEE/sice International Symposium on System Integration (sii 2022), str. 797-802, 2022.
  • Gude, Juan J. – Bringas, Pablo Garcia: A Novel Control Hardware Architecture for Implementation of Fractional-Order Identification and Control Algorithms Applied to a Temperature Prototype. Mathematics, č. 1, zv. 11, 2023.
Ľ. ČirkaM. KalúzJ. Oravec – N. Míková: Designing PID Controllers Using MATLAB-SIMULINK Via the Internet. Editor(i): Byron, P., V 22nd Annual Conference Proceedings of the Technical Computing Bratislava 2014, zv. 22, 2014.
  • Počet citácií       3
  • Králik, M. – Žáková, K.: Interactive WebGL Model of Hydraulic Plant. IFAC-PapersOnLine Journal (IBCE15 Brescia), č. 29, zv. 48, str. 146 - 151, 2015.
  • Žáková, K. – Hók, M.: Interactive Three Dimensional Presentation of Segway Laboratory Model. V 14th IEEE International Conference on Emerging eLearning Technologies and Applications, ICETA 2016, Starý Smokovec, The High Tatras, Slovakia, str. 377-380, 2016.
  • M. O. Efe: MATLAB/Simulink based restructuring of the first automatic control course in engineering curricula. V 2016 15th International Conference on Information Technology Based Higher Education and Training (ITHET), str. 1-5, 2016.
M. KalúzĽ. Čirka – R. Valo – M. Fikar: ArPi Lab: A Low-cost Remote Laboratory for Control Education. V Preprints of the 19th IFAC World Congress Cape Town (South Africa) August 24 - August 29, 2014, 2014.
  • Počet citácií       45
  • Mbihi, J.: A Flexible Multimedia Workbench for Digital Control of Input-Delay Servo Systems. Journal of Computer Science and Control Systems, 2015.
  • Reguera, P. – García, D. – Domínguez, M. – Prada, M.A. – Alonso, S.: A LOW-COST OPEN SOURCE HARDWARE IN CONTROL EDUCATION. CASE STUDY: ARDUINO-FEEDBACK MS-150. IFAC-PapersOnLine Journal, č. 29, zv. 48, str. 117-122, 2015.
  • J. A. Ortega Moody – R. E. Sanchez Alonso – J. J. Gonzalez Barbosa – G. Reyes Morales: Virtual Laboratories for Training in Industrial Robotics. IEEE Latin America Transactions, č. 2, zv. 14, str. 665-672, 2016.
  • Roman-Herrera, C – Loza-Matovelle, D. – Segura, L. – Reza, D.: The construction of an open source based low cost turbidity sensor. Iteckne, č. 1, zv. 13, 2016.
  • S. Balula – R. Henriques – J. Fortunato – T. Pereira – H. Borges – G. Amarante-Segundo – H. Fernandes: Distributed e-lab setup based on the Raspberry Pi: The hydrostatic experiment case study. V 3rd Experiment International Conference (exp.at'15), str. 282-285, 2015.
  • P. Brox – G. Huertas-Sánchez – A. López-Angulo – M. Álvarez-Mora – I. Haya: Design of sensory systems using the platform Arduino by undergraduate Physics students. V 2016 Technologies Applied to Electronics Teaching (TAEE), str. 1-6, 2016.
  • Chacón, R. – Codony, D. – Toledo, Á.: From physical to digital in structural engineering classrooms using digital fabrication. Computer Applications in Engineering Education, 2017.
  • M. S. Matijević – N. D. Jović – M. S. Nedeljković – Đ. S. Čantrak: Remote labs and problem oriented engineering education. V 2017 IEEE Global Engineering Education Conference (EDUCON), str. 1391-1396, 2017.
  • Amir, Maral – Givargis, Tony: Priority Neuron: A Resource-Aware Neural Network for Cyber-Physical Systems. IEEE Transactions on Computer-aided Design of Integrated Circuits and Systems, č. 11, SI, zv. 37, str. 2732-2742, 2018.
  • Zine, O. – Errouha, M. – Zamzoum, O. – Derouich, A. – Talbi, A.: SEITI RMLab: A costless and effective remote measurement laboratory in electrical engineering. International Journal of Electrical Engineering Education, 2018.
  • Garcia, F.E.M. – Delgado, B.M. – Castro, S. – Fuentes, J. – Mora, S.S.: Experimentación de controladores digitales clásicos en un sistema embebido aplicado en un proceso térmico. Revista UIS Ingenierías, č. 1, zv. 17, 2018.
  • A. Škraba – A. Koložvari – D. Kofjač – B. Vavtar – R. Stojanović – V. Stanovov – E. Semenkin: Development of educational cyber-physical Internet of Things platform study of the PID controller. V 2018 7th Mediterranean Conference on Embedded Computing (MECO), str. 1-4, 2018.
  • Cardoso, A. – Gil, P. – Urbano, D. – Palma, L.B.: Benefits of Using Remote Labs in Intelligent Control Teaching. V Teaching and Learning in a Digital World, Editor(i): Auer, M.E., Guralnick, D., Simonics, I., Springer International Publishing, str. 79--85, 2018.
  • Uyanik, I. – Catalbas, B.: A low-cost feedback control systems laboratory setup via Arduino–Simulink interface. Computer Applications in Engineering Education, č. 3, zv. 26, str. 718-726, 2018.
  • Bahadır Çatalbaş – İsmail Uyanık: A Low-cost Laboratory Experiment Setup for Frequency Domain Analysis for a Feedback Control Systems Course. IFAC-PapersOnLine, č. 1, zv. 50, str. 15704 - 15709, 2017.
  • Fuentes, Jose – Castro, Sergio – Medina, Byron – Moreno, Francisco – Sepulveda, Sergio: Experimentation of classic digital controllers in an embedded system applied in a thermal process. Uis Ingenierias, č. 1, zv. 17, str. 81-91, 2018.
  • Sulema, Y. – Dychka, I. – Sulema, O.: Multimodal Data Representation Models for Virtual, Remote, and Mixed Laboratories Development. Springer International Publishing, V Smart Industry & Smart Education, str. 559-569, 2019.
  • Lustig, F. – Brom, P. – Kuriscak, P. – Dvorak, J.: Hands-on-Remote Laboratories. Springer International Publishing, V Smart Industry & Smart Education, str. 118-127, 2019.
  • Othmane Zine – Mustapha Errouha – Othmane Zamzoum – Aziz Derouich – Abdennebi Talbi: SEITI RMLab: A costless and effective remote measurement laboratory in electrical engineering. The International Journal of Electrical Engineering & Education, č. 1, zv. 56, str. 3-23, 2019.
  • Malaoui, A. – Taifi, N. – Taj, A.M. – Abouhilal, A.: Using online remote laboratory in agriculture engineering and electronic training. International journal of online and biomedical engineering, č. 6, zv. 15, str. 66-82, 2019.
  • Matijevic, M. – Nedeljkovic, M.S.: Design and Use of Digitally Controlled Electric Motors for Purpose of Engineering Education. Advances in Intelligent Systems and Computing, zv. 916, str. 833-844, 2020.
  • Herbig, M. – Böhme, U.: Königliches im Labor. Nachrichten aus der Chemie, č. 7, zv. 67, str. 31-34, 2019.
  • Nikhil, J. – Pavan, J. – Darshan, H.O. – Anand Kumar, G. – Gaurav, J. – Yamuna Devi, C.R.: Digital Remote Labs Built by the Students and for the Students. Lecture Notes in Networks and Systems, zv. 47, str. 261-268, 2019.
  • N. Janković: Problem-Oriented Learning Based on Use of Shared Experimental Results. Springer, V Mobile Technologies and Applications for the Internet of Things, Proceedings of the 12th IMCL Conference, 2019.
  • J. Königsmarková – M. Goubej – J. Sobota – M. Čech: Raspberry Pi-based HIL simulators for control education. IFAC-PapersOnLine, č. 9, zv. 52, str. 68 - 73, 2019.
  • Veysel Demir – Hemanth Kumar Kachadimangalam Ramakrishnan: Embedded processor for remote laboratory development. V ASEE Annual Conference and Exposition, Conference Proceedings, 2018.
  • Lustig, F. – Brom, P. – Kuriscák, P.: Professional and hobby hands-on-remote experiments. V AIP Conference Proceedings, 2019.
  • Matijević, M. – Nedeljković, M.S. – Čantrak, Đ.S. – Janković, N.: Problem-oriented learning based on use of shared experimental results. Advances in Intelligent Systems and Computing, zv. 909, str. 47-58, 2019.
  • Abouhilal, A. – Taj, A.M. – Taifi, N. – Malaoui, A.: Embedded electronics applied in remote laboratories using nodejs. International Journal of Emerging Trends in Engineering Research, č. 5, zv. 8, str. 1932-1936, 2020.
  • Letowski, B. – Lavayssière, C. – Larroque, B. – Schröder, M. – Luthon, F.: A fully open source remote laboratory for practical learning. Electronics (Switzerland), č. 11, zv. 9, str. 1-16, 2020.
  • Oh, S.K. – Stickney, N. – Hawthorne, D. – Matthews, S.J.: Teaching Web-Attacks on a Raspberry Pi Cyber Range. V SIGITE 2020 - Proceedings of the 21st Annual Conference on Information Technology Education, str. 324-329, 2020.
  • Buitrago, P.A. – Camacho, R. – Pérez, H.E. – Jaramillo, O. – Villar-Martinez, A. – Rodríguez-Gil, L. – Orduna, P.: Mobile Arduino Robot Programming Using a Remote Laboratory in UNAD: Pedagogic and Technical Aspects: Experience Using a Remote Mobile Robotics Laboratory at UNAD. Advances in Intelligent Systems and Computing, zv. 1231 AISC, str. 171-183, 2021.
  • Pester, A. – Sulema, Y.: Multimodal Data Representation Based on Multi-image Concept for Immersive Environments and Online Labs Development. Advances in Intelligent Systems and Computing, zv. 1231 AISC, str. 205-222, 2021.
  • Salinas-Sagbay, P. – Sarango-Lapo, C.P. – Barba, R.: Design of a Mobile Application for Access to the Remote Laboratory. Communications in Computer and Information Science, zv. 1195 CCIS, str. 391-402, 2020.
  • H. Fukumoto – T. Yamaguchi – M. Ishibashi – T. Furukawa: Developing a Remote Laboratory System of Stepper Motor for Learning Support. IEEE Transactions on Education, str. 1-7, 2020.
  • Fukumoto, H. – Yamaguchi, T. – Ishibashi, M. – Furukawa, T.: Developing a Remote Laboratory System of Stepper Motor for Learning Support. IEEE Transactions on Education, č. 3, zv. 64, str. 292-298, 2021.
  • Martin, S. – Fernandez-Pacheco, A. – Ruiperez-Valiente, J.A. – Carro, G. – Castro, M.: Remote Experimentation through Arduino-Based Remote Laboratories. Revista Iberoamericana de Tecnologias del Aprendizaje, č. 2, zv. 16, str. 180-186, 2021.
  • Abouhilal, A. – Taj, A.M. – Taifi, N. – Malaoui, A.: Embedded electronics applied in remote laboratories using NodeJs. Iraqi Journal of Science, zv. 2021, str. 1-6, 2021.
  • FERNÁNDEZ-SAMACÁ, L. – HIGUERA-MARTÍNEZ, O.I. – SANABRIA-TOTAITIVE, C.A.: Building small prototypes in a pbl intervention for learning automatic control systems. International Journal of Engineering Education, č. 5, zv. 37, str. 1274-1288, 2021.
  • De Carvalho, M.M. – Valente De Bessa, I. – MacHado, G.S. – De Souza Picanco, W. – Paiva De Medeiros, R.L. – Ferreira De Lucena Jr, V.: Teaching Industry 4.0 Related Topics During the COVID-19 Restrictions - An Experience Report. V Proceedings - Frontiers in Education Conference, FIE, 2022.
  • Stan, C.-M. – Neacsu, D.: A Remote Laboratory for Linear Electronics Based on the Red Pitaya Board. V EPE 2022 - Proceedings of the 2022 12th International Conference and Exposition on Electrical and Power Engineering, str. 113-117, 2022.
  • Niquin, M.C. – Puelles, N.C. – Roman, M.C. – Araoz, J.V. – Pimentel, V. – Pineda, C.L.: Low-Cost Remote Laboratory for Robotics Undergraduate Learning during Covid Context. V 2022 IEEE 2nd International Conference on Educational Technology, ICET 2022, str. 11-15, 2022.
  • Alsaleh, S. – Tepljakov, A. – Kose, A. – Belikov, J. – Petlenkov, E.: ReImagine Lab: Bridging the Gap Between Hands-On, Virtual and Remote Control Engineering Laboratories Using Digital Twins and Extended Reality. IEEE Access, zv. 10, str. 89924-89943, 2022.
  • Panagiotakis, S. – Karampidis, K. – Garefalakis, M. – Tsironi-Lamari, A. – Rallis, I. – Kamarianakis, Z. – Papadourakis, G.: Remote Arduino Labs for Teaching Microcontrollers and Internet of Things Programming. V Proceedings of the 2022 31st Annual Conference of the European Association for Education in Electrical and Information Engineering, EAEEIE 2022, 2022.
  • Rath, G. – Payr, M.: A Remote Laboratory for Teaching Internet of Things in Online Education. V 2022 11th Mediterranean Conference on Embedded Computing, MECO 2022, 2022.
M. Kalúz – J. García-Zubía – P. Orduña – M. FikarĽ. Čirka: Sharing Control Laboratories by Remote Laboratory Management System WebLab-Deusto. Editor(i): Sebastián Dormido, V Proceedings of 10th IFAC Symposium on Advances in Control Education, International Federation of Automatic Control, Sheffield, UK, zv. 10, str. 345–350, 2013.
  • Počet citácií       6
  • Heradio, R. – de la Torre, L. – Dormido, S.: Virtual and remote labs in control education: A survey. Annual Reviews in Control, 2016.
  • Bistak, P.: Mobile web application for group of remote laboratories using middleware. V Emerging eLearning Technologies and Applications (ICETA), 2014 IEEE 12th International Conference on, str. 51-56, 2014.
  • May, D. – Sadiki, A. – Pleul, C. – Erman Tekkaya, A.: Teaching and learning globally connected using live online classes for preparing international engineering students for transnational collaboration and for studying in Germany. V Remote Engineering and Virtual Instrumentation (REV), 2015 12th International Conference on, str. 118-126, 2015.
  • Ayush Sharma – Ján Drgoňa – Deepak Ingole – Juraj Holaza – Richard Valo – Simon Koniar – Michal Kvasnica: Teaching Classical and Advanced Control of Binary Distillation Column. V IFAC-PapersOnLine, 11th IFAC Symposium on Advances in Control Education ACE 2016, str. 348 - 353, 2016.
  • Krneta, R.: Sharing Online Experiments - An Excellent Opportunity for Networking of Higher Education Institutions. V International Journal of Interactive Mobile Technologies, str. 37-43, 2017.
  • Andreev, S.V. – Denisov, E.Y. – Ryzhova, I.G. – Voloboy, A.G.: Stand for remote development of a display visualization system for civil aircraft cockpit. Scientific Visualization, č. 3, zv. 13, str. 22-33, 2021.
M. KalúzĽ. ČirkaM. Fikar: Simplifying the Implementation of Remote Laboratories in Educational Environments Using Industrial Hardware. Editor(i): Fikar, M., Kvasnica, M., V Proceedings of the 19th International Conference on Process Control, Slovak University of Technology in Bratislava, Štrbské Pleso, Slovakia, str. 522–527, 2013.
  • Počet citácií       5
  • Barros, C. – Leao, C. P. – Soares, F. – Minas, G. – Machado, J.: Issues in remote laboratory developments for biomedical engineering education. V International Conference on Interactive Collaborative Learning (ICL), str. 290-295, 2013.
  • Bistak, P. – Zakova, K.: Rapid design of simple remote laboratory using matlab. V IEEE 11th International Conference on Emerging eLearning Technologies and Applications (ICETA), str. 41-45, 2013.
  • Chen, Y. – Ma, L. – Meng, X. – Yan, H.: Virtual Digital Control Experimental System. The Open Cybernetics & Systemics Journal, str. 329-334, 2015.
  • González, I. – Calderón, A. J. – Mejías, A. – Andújar, J. M.: Novel Networked Remote Laboratory Architecture for Open Connectivity Based on PLC-OPC-LabVIEW-EJS Integration. Application in Remote Fuzzy Control and Sensors Data Acquisition. Sensors, č. 11, zv. 16, str. 1822, 2016.
  • Zhang, S. – Tang, Y.: A configurable evaluation system for PLC experiments deployed on cloud. Computer Applications in Engineering Education, č. 6, zv. 29, str. 1675-1690, 2021.
M. Fikar – Ľ. Malíková – K. Staroňová – Ľ. Vávrová – E. Beblavá – Ľ. Čirka – Z. Bajúszová – P. Halák – Z. Hanout: Výskum potrieb a možností online vzdelávania verejnej správy v stredoeurópskom kontexte a príručka pre lektorov Moodle 2, FSEV UK v Bratislave, 2012.
  • Počet citácií       2
  • Hvorecky, J.: V IEEE 11th International Conference on Emerging eLearning Technologies and Applications (ICETA), str. 159-164, 2013.
  • Stofkova, J. – Stofko, S. – Loucanova, E.: POSSIBILITIES OF USING E-LEARNING SYSTEM OF EDUCATION AT UNIVERSITIES. V Inted2017: 11th International Technology, Education and Development Conference, str. 6965-6972, 2017.
M. KalúzĽ. ČirkaM. Fikar: Virtual and Remote Laboratories in Process of Control Education. International Journal of Online Engineering, č. 1, zv. 8, str. 8–13, 2012.
  • Počet citácií       1
  • Ni, Jian-Long – Li, Jing-Rong – Xu, De-Jian – Yu, Yong-Peng – Wang, Qing-Hui: A development platform prototype for virtual laboratories. Computer Applications in Engineering Education, 2021.
M. KalúzĽ. ČirkaM. Fikar: Virtual and Remote Laboratories in Education Process at FCFT STU. Editor(i): Michael E. Auer, Mikuláš Huba, V Proceedings of the 14th International Conference on Interactive Collaborative Learning, International Association of Online Engineering, Kirchengasse 10/200, A-1070, Wien, Austria, Piešťany, Slovakia, str. 134–139, 2011.
  • Počet citácií       7
  • Tawfik, Mohamed – Sancristobal, Elio – Martin, Sergio – Gil, Rosario – Diaz, Gabriel – Peire, Juan – Castro, Manuel: On the design of remote laboratories. V IEEE Global Engineering Education Conference (EDUCON), str. 1 -6, 2012.
  • Palkovič, L. – Rodina, J. – Chovanec, Ľ. – Hubinský, P.: Integration of Inertial Measuring Unit Platform into MATLAB Simulink. V 9th IFAC Symposium Advances in Control Education, Nizhny Novgorod, Russia, str. 200-205, 2012.
  • Palkovič, L. – Rodina, J. – Chovanec, Ľ. – Chovancová, A. – Hubinský, P.: Remote Labolatory with Modular Inertial Measuring Unit Platform. Procedia Engineering, zv. 96, str. 345 - 354, 2014.
  • Huba, M. – Kozák, Š.: From E-learning to Industry 4.0. V 14th IEEE International Conference on Emerging eLearning Technologies and Applications, ICETA 2016, Starý Smokovec, The High Tatras, Slovakia, str. 103-108, 2016.
  • P. Dolezel – M. Dvorak: Computer game as a tool for machine learning education. V 21st International Conference on Process Control (PC), str. 104-108, 2017.
  • Ali, A. H. – Mohammad, O. K. J.: Impacting of the E- Platforms on the 4.0th Industrial Educational Revolution. ACM, New York, NY, USA, V Proceedings of the 9th International Conference on Information Systems and Technologies, Cairo, Egypt, 2019.
  • Romagnoli, Giovanni – Esposito, Giovanni – Rizzi, Antonio – Zammori, Francesco – Bertolini, Massimo – Uckelmann, Dieter: Lab Networks in Engineering Education: A Proposed Structure for Organizing Information. International Journal of Online and Biomedical Engineering, č. 5, zv. 16, str. 41-70, 2020.
M. KalúzĽ. ČirkaM. Fikar: Remote Control Software for Thermo-Optical Plant. Editor(i): Fikar, M., Kvasnica. M., V Proceedings of the 18th International Conference on Process Control, Slovak University of Technology in Bratislava, Tatranská Lomnica, Slovakia, str. 587–592, 2011.
  • Počet citácií       8
  • Zakova, K.: Mlabwrap based remote control of thermo-optical plant. V Emerging eLearning Technologies and Applications (ICETA), 2014 IEEE 12th International Conference on, str. 517-521, 2014.
  • M. Gula – K. Žáková: jLab - Java based online laboratory. V 2015 3rd Experiment International Conference (exp.at'15), str. 197-202, 2015.
  • Gula, M. – Žáková, K.: JAVA BASED DEVELOPMENT OF ONLINE EXPERIMENTS. V DISTANCE LEARNING, SIMULATION AND COMMUNICATION 2015, str. 51-57, 2015.
  • Bosak, T. – Zakova, K.: Node.js based remote control of thermo-optical plant. V Remote Engineering and Virtual Instrumentation (REV), 2015 12th International Conference on, str. 209-213, 2015.
  • P. Štefka – K. Žáková: Mobile application for remote control of thermo-optical plant. V 13th International Conference on Remote Engineering and Virtual Instrumentation (REV), str. 435-439, 2016.
  • Žáková, K.: Online Control of TOS1A Thermo-Optical Plant Using OpenModelica. Springer International Publishing, V CONTROLO 2016 (Proceedings of the 12th Portuguese Conference on Automatic Control), str. 869-878, 2016.
  • Štefka, P. – Žáková, K.: Remote Experimentation with Thermo-Optical Plant via Mobile Application.. International Journal of Interactive Mobile Technologies (iJIM), č. 4, zv. 10, str. 75-79, 2016.
  • Zakova, Katarina – Rabek, Matej: Remote Control of Thermo-opto-mechanical Plant via Raspberry Pi. Ifac Papersonline, č. 6, zv. 51, str. 479-483, 2018.
M. KalúzĽ. ČirkaM. Fikar: Virtual Laboratory of Process Control. Editor(i): Fikar, M., Kvasnica. M., V Proceedings of the 18th International Conference on Process Control, Slovak University of Technology in Bratislava, Tatranská Lomnica, Slovakia, str. 348–351, 2011.
  • Počet citácií       7
  • Palkovič, L. – Rodina, J. – Chovanec, Ľ. – Chovancová, A. – Hubinský, P.: Remote Labolatory with Modular Inertial Measuring Unit Platform. Procedia Engineering, zv. 96, str. 345 - 354, 2014.
  • Potkonjak, V. – Gardner, M. – Callaghan, V. – Mattila, P. – Guetl, C. – Petrović, V.M. – Jovanović, K.: Virtual laboratories for education in science, technology, and engineering: A review. Computers and Education, zv. 95, str. 309-327, 2016.
  • P. Leica – O. Camacho – F. Ulloa: A proposal for teaching Advanced Control Techniques using a Virtual Processes Laboratory. V 2018 IEEE Third Ecuador Technical Chapters Meeting (ETCM), str. 1-6, 2018.
  • Rania M. Ghoniem – H.A. Abas – H.A. Bdair: Three-dimensional Simulation System based Intelligent Object-oriented Paradigm for Conducting Physics Experiments. Procedia Computer Science, zv. 135, str. 490 - 502, 2018.
  • Rania M. Ghoniem – H.A. Abas – H.A. Bdair: A novel intelligent object-oriented three-dimensional simulation system for Physics experimentation. Applied Computing and Informatics, 2018.
  • Ghoniem, Rania M – Abas, HA – Bdair, HA: A novel intelligent object-oriented three-dimensional simulation system for physics experimentation. Applied Computing and Informatics, 2020.
  • Mirauda, Domenica – Capece, Nicola – Erra, Ugo: StreamflowVL: A Virtual Fieldwork Laboratory that Supports Traditional Hydraulics Engineering Learning. Applied Sciences-basel, č. 22, zv. 9, 2019.
M. Kvasnica – J. Löfberg – M. Herceg – Ľ. ČirkaM. Fikar: Low-Complexity Polynomial Approximation of Explicit MPC via Linear Programming. V Proceedings of the American Control Conference, Baltimore, USA, str. 4713–4718, 2010.
  • Počet citácií       11
  • Bayat, F. – Johansen, T. A. – Jalali, A. A.: Combining Truncated Binary Search Tree and Direct Search for Flexible Piecewise Function Evaluation for Explicit MPC in Embedded Microcontrollers. V Preprints of the 18th IFAC World Congress Milano, str. 1332-1337, 2011.
  • Axehill, D. – Besselmann, T. – Raimondo, D. M. – Morari, M.: Suboptimal Explicit Hybrid MPC via Branch and Bound. V Preprints of the 18th IFAC World Congress Milano, str. 10281-10286, 2011.
  • Domahidi, A. – Zeilinger, M. N. – Morari, M. – Jones, C. N.: Learning a Feasible and Stabilizing Explicit Model Predictive Control Law by Robust Optimization. V Proceedings of 50th CDC and ECC, Orlando, Florida, str. 513-519, 2011.
  • Ameen, N.A.-S. – Galal, B.S. – Kennel, R.M. – Kanchan, R.S.: The polynomial approximation of the explicit solution of model-based predictive controller for drive applications. V PRECEDE 2011 - Workshop on Predictive Control of Electrical Drives and Power Electronics, str. 76-81, 2011.
  • Wang,X. – Grip,H. F. – Saberi,A. – Johansen,T. A.: A new low-and-high gain feedback design using MPC for global stabilization of linear systems subject to input saturation. V Proceedings of the American Control Conference, str. 2337-2343, 2012.
  • Belda, K. – Vosmik, D.: Speed control of PMSM drives by generalized predictive algorithms. V IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society, Montreal, QC, Canada, str. 2012 -2017, 2012.
  • Jiang, Y. – Zou, Y. – Niu, Y.: An efficient explicit algorithm for multi-rate predictive control systems. International Journal of Modelling, Identification and Control, č. 3, zv. 20, str. 208-214, 2013.
  • Belda, K.: Mathematical Modelling and Predictive Control of Permanent Magnet Synchronous Motor Drives. Transactions on Electrical Engineering, č. 4, zv. 2, str. 114-120, 2013.
  • Nguyen, H.-N.: Constrained control of uncertain, time-varying, discrete-time systems: An interpolation-based approach. Lecture Notes in Control and Information Sciences, zv. 451, 2014.
  • Hovd, M. – Olaru, S. – Bitsoris, G.: Low complexity constraint control using contractive sets. V IFAC Proceedings Volumes (IFAC-PapersOnline), str. 2933-2938, 2014.
  • Findeisen, Rolf – Graichen, Knut – Mönnigmann, M.: Embedded optimization in control: an introduction, opportunities, and challenges. At-automatisierungstechnik, č. 11, zv. 66, str. 877-902, 2018.
Ľ. ČirkaM. KalúzM. KvasnicaM. Fikar: Virtual Laboratory. V Proceedings of the 9th International Scientific - Technical Conference Process Control 2010, University of Pardubice, Kouty nad Desnou, Czech Republic, str. C029a - 1–C029a - 8, 2010.
  • Počet citácií       1
  • Malarvizhi, R. – Veena, S. T.: Web-based power flow analysis using Matlab Builder JA. V Recent Advancements in Electrical, Electronics and Control Engineering (ICONRAEeCE), 2011 International Conference on, str. 156 -159, 2011.
M. Kvasnica – M. Herceg – Ľ. ČirkaM. Fikar: Model predictive control of a CSTR: A hybrid modeling approach. Chemical papers, č. 3, zv. 64, str. 301–309, 2010.
  • Počet citácií       20
  • Xin, Li-Ping – Yu, Bo – Zhao, Lin – Yu, Jinpeng: Adaptive fuzzy backstepping control for a two continuous stirred tank reactors process based on dynamic surface control approach. Applied Mathematics and Computation, č. 125138, zv. 377, 2020.
  • Dostál, P. – Vojtěšek, J. – Bobál, V. – Babík, Z.: 2DOF adaptive control of a tubular chemical reactor. World Scientific and Engineering Academy and Society (WSEAS) Stevens Point, Wisconsin, USA, V Proceedings of the 15th WSEAS international conference on Circuits, systems and signals, str. 39-44, 2011.
  • Dostál, P. – Vojtěšek, J. – Bobál, V. – Babík, Z.: One Approach to Adaptive Control of a Tubular Chemical Reactor. WSEAS Transactions on Fluid Mechanics, č. 1, zv. 7, str. 13-22, 2012.
  • Dostál, P. – Vojtěšek, J. – Bobál, V.: Simulation of adaptive temperature control in a tubular chemical reactor. International Review on Modelling and Simulations, č. 2, zv. 5, str. 1049-1058, 2012.
  • Ivanescu, A.M. – Albin, T. – Abel, D. – Seidl, T.: Employing the Principal Hessian Direction for Building Hinging Hyperplane Models. V Data Mining Workshops (ICDMW), 2012 IEEE 12th International Conference on, str. 481--485, 2012.
  • Lopez Perez, Pablo Antonio – Neria Gonzalez, M. Isabel – Aguilar Lopez, Ricardo: Cadmium concentration stabilization in a continuous sulfate reducing bioreactor via sulfide concentration control. Chemical Papers, č. 3, zv. 67, str. 326-335, 2013.
  • Bakosova, M. – Oravec, J. – Matejickova, K.: Model predictive control-based robust stabilization of a chemical reactor. Chemical Papers, č. 9, zv. 67, str. 1146-1156, 2013.
  • Ping, X. – Ding, B.: Off-line approach to dynamic output feedback robust model predictive control. Systems & Control Letters, č. 11, zv. 62, str. 1038-1048, 2013.
  • Kroll, Andreas – Schulte, Horst: Benchmark problems for nonlinear system identification and control using Soft Computing methods: Need and overview. Applied Soft Computing, zv. 25, str. 496-513, 2014.
  • Kaliappan, V. – Thathan, M.: Least square support vector machine based neural network predictive controller for non-linear process. International Journal of Applied Engineering Research, č. 22, zv. 9, str. 12341-12352, 2014.
  • Dostál, P. – Bobál, V. – Vojtěšek, J. – Chramcov, B.: Adaptive control of nonlinear processes using two methods of parameter estimation. WSEAS Transactions on Systems, zv. 13, str. 292-301, 2014.
  • Vlahakis, Eleftherios – Halikias, George: Temperature and concentration control of exothermic chemical processes in continuous stirred tank reactors. Transactions of the Institute of Measurement and Control, č. 15, zv. 41, str. 4274-4284, 2019.
  • Houzhong, Z. – Jiasheng, L. – Chaochun, Y. – Xiaoqiang, S. – Yingfeng, C.: Application of explicit model predictive control to a vehicle semi-active suspension system. Journal of Low Frequency Noise Vibration and Active Control, č. 3, zv. 39, str. 772-786, 2020.
  • Naregalkar, Akshaykumar – Durairaj, Subbulekshmi: A novel LSSVM-L Hammerstein model structure for system identification and nonlinear model predictive control of CSTR servo and regulatory control. Chemical Product and Process Modeling, 2021.
  • Li, Bingyun – Song, Chunyue – Zhao, Jun – Xu, Zuhua: An event-triggered model predictive control with exponentially stable offset free for PWA systems with model-plant mismatch. Journal of the Franklin Institute-engineering and Applied Mathematics, č. 7, zv. 358, str. 3585-3608, 2021.
  • Xin, L.-P. – Yu, B. – Yu, J.: A novel control for a continuous stirred tank reactor. V Chinese Control Conference, CCC, str. 2510-2513, 2021.
  • P. Dostál – M. Bakošová – J. Vojtěšek – V. Bobál: Adaptive nonlinear control of a continuous stirred tank reactor. Chemical Papers, č. 5, zv. 65, str. 636–643, 2011.
  • L. Blahová – J. Dvoran – J. Kmeťová: Neuro-fuzzy control design of processes in chemical technologies. Archives of Control Sciences, č. 2, zv. 22, str. 233–250, 2012.
  • J. Oravec – M. Bakošová: Robust Constrained MPC Stabilization of a CSTR. Acta Chimica Slovaca, č. 2, zv. 5, str. 153–158, 2012.
  • M. Bakošová – J. Oravec: Robust MPC of an Unstable Chemical Reactor Using the Nominal System Optimization. Acta Chimica Slovaca, č. 2, zv. 7, str. 87–93, 2014.
M. Bakošová – J. OravecĽ. Čirka: Software for PID controller tuning. V Technical Computing Prague 2009, Humusoft, s.r.o., str. 15-1–15-8, 2009.
  • Počet citácií       2
  • Vítečková, M. – Víteček, A.: BASIC FORMS OF TWO-DEGREE-OF-FREEDOM CONTROLLERS. Transactions of the VŠB – Technical University of Ostrava, Mechanical Series, č. 2, zv. 56, str. 195-200, 2010.
  • Vítečková, M. – Víteček, A.: SPECIAL CASES OF TWO-DEGREE-OF-FREEDOM CONTROLLERS. č. 2, zv. 56, str. 201-206, 2010.
M. Kvasnica – M. Herceg – Ľ. ČirkaM. Fikar: Robust Adaptive Minimum-Time Control of Piecewise Affine Systems. V Proceedings of the 48th IEEE Conference on Decision and Control, str. 2454–2459, 2009.
  • Počet citácií       1
  • Takács, G. – Rohaľ-Ilkiv, B.: Model predictive vibration control: Efficient constrained MPC vibration control for lightly damped mechanical structures, 2012.
I. Rauová – M. KvasnicaĽ. ČirkaM. Fikar: Real-Time Model Predictive Control of a Laboratory Liquid Tanks System. Editor(i): Fikar, M., Kvasnica, M., V Proceedings of the 17th International Conference on Process Control ’09, Slovak University of Technology in Bratislava, Štrbské Pleso, Slovakia, str. 304–308, 2009.
  • Počet citácií       4
  • Bayat, F.: Constant Reference Tracking for Fast Linear Constrained Systems. V IEEE Multi-Conference on Systems and Control, Yokohama, Japan, str. 2308-2313, 2010.
  • Alipouri, Y. – Poshtan, J.: Optimal controller design using discrete linear model for a four tank benchmark process. ISA Transactions, zv. 52, str. 644-651, 2013.
  • Grosenick, Logan – Marshel, James H. – Deisseroth, Karl: Closed-Loop and Activity-Guided Optogenetic Control. Neuron, č. 1, zv. 86, str. 106-139, 2015.
  • Mate, S. – Jaju, P. – Bhartiya, S. – Nataraj, P.S.V.: Semi-Explicit Model Predictive Control of Quasi Linear Parameter Varying Systems. European Journal of Control, č. 100750, 2022.
M. Herceg – M. KvasnicaM. FikarĽ. Čirka: Real-Time Control of a Thermo-Optical Device Using Polynomial Approximation of MPC Scheme. Editor(i): Fikar, M., Kvasnica, M., V Proceedings of the 17th International Conference on Process Control ’09, Slovak University of Technology in Bratislava, Štrbské Pleso, Slovakia, str. 332–340, 2009.
  • Počet citácií       1
  • Ameen,N. A. – Galal, B. S. – Kennel, R. M. – Kanchan, R. S.: The polynomial approximation of the explicit solution of model-based predictive controller for drive applications. V PRECEDE 2011 - Workshop on Predictive Control of Electrical Drives and Power Electronics, str. 76-81, 2011.
A. MészárosĽ. Čirka: Control Analysis for Processes with Internal Recycle. Chemical Engineering Transactions, č. 18, str. 731–736, 2009.
  • Počet citácií       2
  • Friedler, F.: Process integration, modelling and optimisation for energy saving and pollution reduction. Applied Thermal Engineering, č. 16, zv. 30, str. 2270-2280, 2010.
  • Wu, H. – Chen, W. – Li, M.-F. – Wang, X.: Temperature control of water with heating, cooling and mixing in a process with recycle loop. SAE Technical Papers, zv. 1, 2014.
A. MészárosĽ. Čirka – Ľ. Šperka: Intelligent Control of a pH Process. Chemical Papers, č. 2, zv. 63, str. 180–187, 2009.
  • Počet citácií       2
  • Blahová, L. – Dvoran, J. – Kmetová, J.: Neuro-fuzzy control design of processes in chemical technologies. Archives of Control Sciences, č. 2, zv. 22, str. 233-250, 2012.
  • Singh, Parikshit Kishor – Bhanot, Surekha – Mohanta, Hare Krishna – Bansal, Vinit: Design and Implementation of Adaptive Fuzzy Knowledge Based Control of pH for Strong Acid-Strong Base Neutralization Process. Journal of Engineering Research, č. 2, zv. 8, str. 130-143, 2020.
Ľ. ČirkaM. KvasnicaM. Fikar: WebLab Module for the Moodle Learning Management System. Editor(i): Huba, M., V Proceedings of 9th International Conference Virtual University 2008, E-academia Slovaca, Bratislava, str. fid000131.pdf, 2008.
  • Počet citácií       3
  • Khalil, Asma – Hasna, Mazen – Benammar, Mohieddine – Chaabane, Mohamed – ben Amar, Chokri: Development of a Remote Lab for Electrical Engineering Program. V 2009 3rd International Conference on Signals, Circuits and Systems (scs 2009), str. 598-602, 2009.
  • Gallardo, A. – Richter, T. – Debicki, P. – Bellido, L. – Mateos, V. – Villagra, V.: A rig booking system for on-line laboratories. V Global Engineering Education Conference (EDUCON), 2011 IEEE, Amman, Jordan, str. 643-648, 2011.
  • Mateos, Verónica – Bellidoa, Luis – Villagrá, Víctor A. – Richter, Thomas – Gallardo, Alberto: Access Control for Shared Remote Laboratories. Journal of Research and Practice in Information Technology, č. 2, zv. 44, str. 111-128, 2012.
J. Mikleš – J. Vöröš – Ľ. Čirka: Robust LQ Control with Real Parametric Uncertainty. V Proceedings of the 8th International Scientific - Technical Conference Process Control 2008, University of Pardubice, Kouty nad Desnou, Czech Republic, str. C186a - 1–C186a - 4, 2008.
  • Počet citácií       1
M. Bakošová – M. FikarĽ. Čirka: E-learning in Process Control Education. V Proceedings of European Congress of Chemical Engineering (ECCE-6), Copenhagen, str. CD ROM 1015.pdf, 2007.
  • Počet citácií       4
  • Márquez, D.A. – Cárdenas, O.O.: Implementation of a virtual laboratory for teaching PID controller (Implementación de un laboratorio virtual para la ensenanza de controladores PID). Informacion Tecnologica, č. 3, zv. 19, str. 75-78, 2008.
  • Tsoulkas, V. – Pantelous, A. – Papachristos, C.: A Conceptual Design of an e-Learning Platform for Mathematical Control Education. V PROCEEDINGS OF THE 8TH EUROPEAN CONFERENCE ON E-LEARNING, Bari, Italy, str. 639-648, 2009.
  • Tsoulkas, V. N. – Pantelous, A. A. – Dritsas, P. L. – Papachristos, C.: Hybrid Satellite-Terrestrial Architecture for Control Systems Education. V 2011 UKSim 13th International Conference on Modelling and Simulation, str. 171-176, 2011.
  • Tsoulkas, V. N. – Pantelous, A. A. – Dritsas, P. L. – Papachristos, C.: Technical Characteristics of an Innovative E-learning Platform for Mathematical Control Education and Future Perspectives. International Journal of Simulation Systems, Science & Technology, č. 1, zv. 12, str. 10-19, 2011.
Ľ. ČirkaM. Fikar: A Dynamical System Identification Toolbox, V Selected Topics in Modelling and Control, Editor(i): Mikleš, J., Veselý, V., Slovak University of Technology Press, zv. 5, str. 58–62, 2007.
  • Počet citácií       5
Ľ. ČirkaM. Fikar – P. Petruš: IDTOOL 4.0 - A Dynamical System Identification Toolbox for MATLAB/Simulink. V 14th Annual Conference Proceedings: Technical Computing Prague 2006, The MathWorks, Inc. & HUMUSOFT s.r.o. & Ústav počítačové a řídicí techniky VŠCHT v Praze, str. 29–29, 2006.
  • Počet citácií       6
  • Matušů, R. – Prokop, R.: Polynomial Approach to Digital Self-Tuning Control: Industrially Motivated Application. WSEAS Press, V Mathematical Methods and Techniques in Engineering and Environmental Science, Catania, Sicily, Italy, str. 237-242, 2011.
  • Matušů, R. – Prokop, R.: Software Implementation of Self-Tuning Controllers. V New Trends in Technologies: Control, Management, Computational Intelligence and Network Systems, Editor(i): Meng J. E., Kapitola: 3. InTech, str. 39-52, 2010.
  • Matušů, R. – Prokop, R.: Software Implementation of Discrete-Time Adaptive Control. V 13th International Research/Expert Conference ”Trends in the Development of Machinery and Associated Technology” TMT 2009, Hammamet, Tunisia, str. 785-788, 2009.
  • Matušů, R. – Prokop, R.: Various Approaches to Solving an Industrially Motivated Control Problem: Software Implementation and Simulation. International Journal of Mathematics and Computers in Simulation, č. 1, zv. 6, str. 161-168, 2012.
  • Horla, D. – Krolikowski, A.: Continuous-Time Adaptive LQG/LTR Control. V Preprints of the 7th IFAC Symposium on Robust Control Design, str. 553-557, 2012.
  • Rapheal, Orosun – Sani, Adamu Sunusi: Modeling and Controller Design of an Industrial Oil-Fired Boiler Plant. International Journal of Advances in Engineering & Technology, č. 1, zv. 3, str. 534-541, 2012.
J. MiklešĽ. ČirkaM. Fikar: H2 Optimal Controller with Integral Action for a Chemical Reactor. V Proceedings of the 2006 IEEE International Conference on Control Applications, Munich, Germany, str. 2127–2131, 2006.
  • Počet citácií       3
  • Meghna, P.R. – Saranya, V. – Jaganatha Pandian, B.: Design of Linear-Quadratic-Regulator for a CSTR process. V IOP Conference Series: Materials Science and Engineering, 2017.
  • Saini, P. – Kumar, R. – Sharma, P. – Rajput, N.: Design and comparative analysis of controllers for continuous stirred tank reactor (CSTR). Advances in Intelligent Systems and Computing, zv. 479, str. 351-365, 2017.
  • M. Bakošová – D. Puna – P. Dostál – J. Závacká: Robust stabilization of a chemical reactor. Chemical Papers, č. 5, zv. 63, str. 527–536, 2009.
Ľ. ČirkaM. FikarJ. Mikleš: Youla-Kučera Parameterisation Approach to LQ Tracking and Disturbance Rejection Problem. V Proceedings of the 16th World Congress of the International Federation of Automatic Control, Prague, Czech Republic, 2005.
  • Počet citácií       2
  • Stefanovski, Jovan D.: Passive fault tolerant perfect tracking with additive faults. Automatica, zv. 87, str. 432-436, 2018.
  • Stefanovski, J.: Fault Diagnosis/Fault-Tolerant Control: A Survey of Results for Linear Systems Over Frequency Region in Presence of Disturbances. Studies in Systems, Decision and Control, zv. 415, str. 107-157, 2022.
Ľ. ČirkaM. Fikar: IDTOOL 3.0 - A Dynamical System Identification Toolbox for MATLAB/SIMULINK. Editor(i): J. Mikleš, M. Fikar, J. Dvoran, V Proceedings of the 15th International Conference Process Control '05, Slovak University of Technology in Bratislava, Štrbské Pleso, High Tatras, Slovakia, 2005.
  • Počet citácií       2
M. Bakošová – M. FikarĽ. Čirka: Základy automatizácie. Laboratórne cvičenia zo základov automatizácie, Vydavateľstvo STU, Bratislava, 2003.
  • Počet citácií       2
  • L. Blahová – J. Dvoran: Neuro-Fuzzy Control of the Three Tank System. Editor(i): Fikar, M., Kvasnica. M., V Proceedings of the 18th International Conference on Process Control, Slovak University of Technology in Bratislava, Tatranská Lomnica, Slovakia, str. 356–359, 2011.
  • L. Blahová – J. Dvoran – J. Kmeťová: Intelligent Control of the Three Tank System. Editor(i): Markoš, J., V Proceedings of the 38th International Conference of Slovak Society of Chemical Engineering, Slovak Society of Chemical Engineering, Tatranské Matliare, Slovakia, str. 100–107, 2011.
Ľ. ČirkaJ. MiklešM. Fikar: A deterministic LQ tracking problem: Parameterization of the controller. Kybernetika, č. 4, zv. 38, str. 469–478, 2002.
  • Počet citácií       1
  • Pradin, B. – Garcia, G.: Modelisation, Analyse et Commande des Systemes Lineaires. V Modelisation, Analyse et Commande des Systemes Lineaires, PRESSES UNIV MIRAIL, UNIV TOULOUSE MIRAIL, 5 ALLEES ANTONIO MACHADO, 31058 TOULOUSE, FRANCE, str. 1-369, 2010.
  • Počet citácií       11
  • Matusu, R. – Prokop, R. – Pekar, L.: Polynomial Approach to Discrete-Time Adaptive Control: Software Implementation for Industrial Application. V Proceedings of the 20th International DAAAM Symposium, str. 523-524, 2009.
  • Yucelen, T. – Pourboghrat, F.: Active Noise Blocking: Non-Minimal Modeling, Robust Control, and Implementation. V American Control Conference, Hyatt Regency Riverfront, St. Louis, MO, USA, str. 5492-5497, 2009.
  • Yucelen, T. – Pourboghrat, F: Adaptive Hinf Optimal Control Strategy Based on Nonminimal State Space Realization. ASME, V Proceedings of IMECE2007 - International Mechanical Engineering Congress and Exposition, Seattle, Washington, USA, str. 1-8, 2007.
  • Navrátil, P. – Ivanka, J.: Recursive Identification Algorithms Library. RT Systems, s.r.o., V Technical Computing Bratislava 2010, str. 1-11, 2010.
  • Navrátil, P. – Ivanka, J.: Recursive estimation algorithms in Matlab & Simulink development environment. WSEAS Transactions on Computers, zv. 13, str. 691-702, 2014.
  • Navratil, P. – Ivanka, J.: Recursive identification algorithms library in Matlab & SIMULINK. V Annals of DAAAM and Proceedings of the International DAAAM Symposium, str. 1317-1318, 2011.
  • Yucelen, T. – Pourboghrat, F.: Adaptive H optimal control strategy based on nonminimal state space realization. V ASME International Mechanical Engineering Congress and Exposition, Proceedings, str. 1951-1958, 2008.
  • Š. Kožka – J. Mikleš: An iterative identification and control design of a chemical reactor. Chemical Papers, č. 5, zv. 57, str. 335–341, 2003.
  • Š. Kožka – A. Zemanovičová – G. Bachmann – H. Hofbauer: An application of identification and control design to the experimental calorimeter. Chemical Papers, č. 4, zv. 57, str. 229–236, 2003.
  • Š. Kožka – A. Zemanovičová – H. Hofbauer – G. Bachmann: Identification of the experimental multi-kilogram capacity calorimeter. Editor(i): J. Mikleš, M. Fikar, J. Dvoran, V Proceedings of the 13th International Conference Process Control '01, Slovak University of Technology Bratislava, Slovak, Štrbské Pleso, High Tatras (Slovakia), 2001.
  • Ľ. Šperka – A. Andrášik – A. Mészáros – S. Smetana: Identification of a fermentation process - hybrid modelling vs. recursive LSM. Editor(i): J. Mikleš, M. Fikar, J. Dvoran, V Proceedings of the 14th International Conference Process Control '03, Slovak University of Technology in Bratislava, Štrbské Pleso, High Tatras (Slovakia), 2003.
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