Communication and Control in Electric Power Systems - Mohammad Shahidehpour
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Présentation Communication And Control In Electric Power Systems de Mohammad Shahidehpour Format Relié
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Résumé : 1. Introduction 1 2. Parallel and Distributed Processing of Power Systems 47 3. Information System for Control Centers 101 4. Common Information Model and Middleware for Integration 135 5. Parallel and Distributed Load Flow Computation 177 6. Parallel and Distributed Load Flow of Distribution Systems 209 7. Parallel and Distributed State Estimation 235 8. Distributed Power System Security Analysis 265 9. Hierarchical and Distributed Control of Voltage/VAR 307 10. Transmission Congestion Management Based on Multi-Agent Theory 349 11. Integration, Control, and Operation of Distributed Generation 391 12. Special Topics in Power System Information System 439 Appendix A. Example System Data 477 Appendix B. Measurement Data for Distributed State Estimation 483 Appendix C. IEEE-30 Bus System Data 493 Appendix D. Acronyms 497 Bibliography 503 Index 531
Preface xix
Biographie: MOHAMMAD SHAHIDEHPOUR, PhD, is a professor in the Electrical and Computer Engineering Department and Director of the Electric Power and Power Electronics Center at the Illinois Institute of Technology, where he has served in various administrative positions, including Dean of the Graduate College and Associate Vice President for research. He has over twenty years of experience as a consultant to the electric power industry. He is the author of more than 250 technical papers as well as three books on power system optimization and energy scheduling. Dr. Shahidehpour is a Fellow of IEEE. YAOYU WANG, PhD, is a senior research scientist in the Electric Power and Power Electronics Center at the Illinois Institute of Technology. He has twelve years of industrial and academic experience in power systems computation, optimization, and control...
Sommaire: The first extensive reference on these important techniques The restructuring of the electric utility industry has created the need for a mechanism that can effectively coordinate the various entities in a power market, enabling them to communicate efficiently and perform at an optimal level. Communication and Control in Electric Power Systems, the first resource to address its subject in an extended format, introduces parallel and distributed processing techniques as a compelling solution to this critical problem. Drawing on their years of experience in the industry, Mohammad Shahidehpour and Yaoyu Wang deliver comprehensive coverage of parallel and distributed processing techniques with a focus on power system optimization, control, and communication. The authors begin with theoretical background and an overview of the increasingly deregulated power market, then move quickly into the practical applications and implementations of these pivotal techniques. Chapters include: A ready resource for both students and practitioners, Communication and Control in Electric Power Systems proves an ideal textbook for first-year graduate students in power engineering with an interest in computer communication systems and control center design. Designers, operators, planners, and researchers will likewise appreciate its unique contribution to the professional literature.
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