An Integrated Framework for Smart Microgrids Modeling, Monitoring, Control, Communication, and Verification
The microgrid (MG) paradigm is a new concept which is considered as a solution for addressing technical, economical, and environmental issues of modern power systems. The application of MG is the subject of extensive studies and experimental tests. It is recognized that there are a number of technic...
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Published in | Proceedings of the IEEE Vol. 99; no. 1; pp. 119 - 132 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.01.2011
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | The microgrid (MG) paradigm is a new concept which is considered as a solution for addressing technical, economical, and environmental issues of modern power systems. The application of MG is the subject of extensive studies and experimental tests. It is recognized that there are a number of technical challenges concerning the operation, monitoring, control, and protection of MGs systems. In this respect, the rapid development of the information and communication technologies (ICTs) has opened the door for feasible and cost-effective solutions allowing more extensive intra- and interutility information exchange, diffusion, and open access to a wide range of real-time information. Consequently, the ICTs could represent a strategic tool in supporting effective MG operation. According to this statement, the paper proposes an advanced framework based on the service-oriented architectures for integrated MG modeling, monitoring, and control. The proposed framework is platform, language, and vendor independent, and thus it is an ideal candidate for an effective integration in existing energy management systems and distribution management systems (EMSs/DMSs). |
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AbstractList | The microgrid (MG) paradigm is a new concept which is considered as a solution for addressing technical, economical, and environmental issues of modern power systems. The application of MG is the subject of extensive studies and experimental tests. It is recognized that there are a number of technical challenges concerning the operation, monitoring, control, and protection of MGs systems. In this respect, the rapid development of the information and communication technologies (ICTs) has opened the door for feasible and cost-effective solutions allowing more extensive intra- and interutility information exchange, diffusion, and open access to a wide range of real-time information. Consequently, the ICTs could represent a strategic tool in supporting effective MG operation. According to this statement, the paper proposes an advanced framework based on the service-oriented architectures for integrated MG modeling, monitoring, and control. The proposed framework is platform, language, and vendor independent, and thus it is an ideal candidate for an effective integration in existing energy management systems and distribution management systems (EMSs/DMSs). |
Author | Villacci, Domenico Terzija, Vladimir Popov, Marjan Vaccaro, Alfredo |
Author_xml | – sequence: 1 givenname: Alfredo surname: Vaccaro fullname: Vaccaro, Alfredo email: vaccaro@unisannio.it organization: Department of Engineering, University of Sannio, Benevento, Italy – sequence: 2 givenname: Marjan surname: Popov fullname: Popov, Marjan email: M.Popov@tudelft.nl organization: Faculty of Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, Delft, The Netherlands – sequence: 3 givenname: Domenico surname: Villacci fullname: Villacci, Domenico email: villacci@unisannio.it organization: Department of Engineering, University of Sannio, Benevento, Italy – sequence: 4 givenname: Vladimir surname: Terzija fullname: Terzija, Vladimir email: terzija@ieee.org organization: School of Electrical & Electronic Engineering, the University of Manchester, Manchester, U.K |
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SubjectTerms | Communication Distributed energy resources Energy management Energy resources information and communication technologies (ICT) microgrids management Monitoring Power systems management Service oriented architecture Smart grids Voltage control |
Title | An Integrated Framework for Smart Microgrids Modeling, Monitoring, Control, Communication, and Verification |
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