Voltage And Frequency Control Of Microgrid System With Demand Response
This paper describe the operation of Microgrid system with integrated photovoltaic, fuel cell and battery bank. Photovoltaic represents variable resources whereas fuel cell represents dispatch-able resources. These sources are coupled to grid through power electronic converter. The inverters are con...
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2016
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my.utem.eprints.180662021-07-18T22:41:45Z http://eprints.utem.edu.my/id/eprint/18066/ Voltage And Frequency Control Of Microgrid System With Demand Response Alias , Khamis Mohd Ruddin, Ab Ghani Gan, Chin Kim Muhammad Nizam , Kamarudin T Technology (General) This paper describe the operation of Microgrid system with integrated photovoltaic, fuel cell and battery bank. Photovoltaic represents variable resources whereas fuel cell represents dispatch-able resources. These sources are coupled to grid through power electronic converter. The inverters are controlled by decoupled control method. The frequency and voltage inside Microgrid is controlled by performing fast demand respond. The proof of concept for this study is performed in MATLAB with SIMPOWERSYSTEM toolbox. The simulation results show that fast demand respond is capable in controlling the voltage and frequency of the interconnected Microgrid system. United Kingdom Simulation Society 2016-01 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/18066/2/16a.pdf Alias , Khamis and Mohd Ruddin, Ab Ghani and Gan, Chin Kim and Muhammad Nizam , Kamarudin (2016) Voltage And Frequency Control Of Microgrid System With Demand Response. International Journal of Simulation Systems Science & Technology, 17 (41). pp. 1-6. ISSN 1473-8031 http://ijssst.info/Vol-17/No-41/cover-17-41.htm/ |
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T Technology (General) Alias , Khamis Mohd Ruddin, Ab Ghani Gan, Chin Kim Muhammad Nizam , Kamarudin Voltage And Frequency Control Of Microgrid System With Demand Response |
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This paper describe the operation of Microgrid system with integrated photovoltaic, fuel cell and battery bank. Photovoltaic represents variable resources whereas fuel cell represents dispatch-able resources. These sources are coupled to grid through power electronic converter. The inverters are controlled by decoupled control method. The frequency and voltage inside Microgrid is controlled by performing fast demand respond. The proof of concept for this study is performed in MATLAB with SIMPOWERSYSTEM toolbox. The simulation results show that fast demand respond is capable in controlling the voltage and frequency of the interconnected Microgrid system. |
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Article |
author |
Alias , Khamis Mohd Ruddin, Ab Ghani Gan, Chin Kim Muhammad Nizam , Kamarudin |
author_facet |
Alias , Khamis Mohd Ruddin, Ab Ghani Gan, Chin Kim Muhammad Nizam , Kamarudin |
author_sort |
Alias , Khamis |
title |
Voltage And Frequency Control Of Microgrid System With Demand Response |
title_short |
Voltage And Frequency Control Of Microgrid System With Demand Response |
title_full |
Voltage And Frequency Control Of Microgrid System With Demand Response |
title_fullStr |
Voltage And Frequency Control Of Microgrid System With Demand Response |
title_full_unstemmed |
Voltage And Frequency Control Of Microgrid System With Demand Response |
title_sort |
voltage and frequency control of microgrid system with demand response |
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United Kingdom Simulation Society |
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2016 |
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http://eprints.utem.edu.my/id/eprint/18066/2/16a.pdf http://eprints.utem.edu.my/id/eprint/18066/ http://ijssst.info/Vol-17/No-41/cover-17-41.htm/ |
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1706960903775191040 |