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Grid Optimal Integration of Electric Vehicles: Examples with Matlab Implementation (Hardcover, 1st ed. 2018): Andres Ovalle,... Grid Optimal Integration of Electric Vehicles: Examples with Matlab Implementation (Hardcover, 1st ed. 2018)
Andres Ovalle, Ahmad Hably, Seddik Bacha
R3,134 Discovery Miles 31 340 Ships in 18 - 22 working days

This book is a compilation of recent research on distributed optimization algorithms for the integral load management of plug-in electric vehicle (PEV) fleets and their potential services to the electricity system. It also includes detailed developed Matlab scripts. These algorithms can be implemented and extended to diverse applications where energy management is required (smart buildings, railways systems, task sharing in micro-grids, etc.). The proposed methodologies optimally manage PEV fleets' charge and discharge schedules by applying classical optimization, game theory, and evolutionary game theory techniques. Taking owner's requirements into consideration, these approaches provide services like load shifting, load balancing among phases of the system, reactive power supply, and task sharing among PEVs. The book is intended for use in graduate optimization and energy management courses, and readers are encouraged to test and adapt the scripts to their specific applications.

Power Electronic Converters Modeling and Control - with Case Studies (Paperback, 2014 ed.): Seddik Bacha, Iulian Munteanu,... Power Electronic Converters Modeling and Control - with Case Studies (Paperback, 2014 ed.)
Seddik Bacha, Iulian Munteanu, Antoneta Iuliana Bratcu
R3,648 Discovery Miles 36 480 Ships in 18 - 22 working days

Modern power electronic converters are involved in a very broad spectrum of applications: switched-mode power supplies, electrical-machine-motion-control, active power filters, distributed power generation, flexible AC transmission systems, renewable energy conversion systems and vehicular technology, among them. Power Electronics Converters Modeling and Control teaches the reader how to analyze and model the behavior of converters and so to improve their design and control. Dealing with a set of confirmed algorithms specifically developed for use with power converters, this text is in two parts: models and control methods. The first is a detailed exposition of the most usual power converter models: * switched and averaged models; * small/large-signal models; and * time/frequency models. The second focuses on three groups of control methods: * linear control approaches normally associated with power converters; * resonant controllers because of their significance in grid-connected applications; and * nonlinear control methods including feedback linearization, stabilizing, passivity-based, and variable-structure control. Extensive case-study illustration and end-of-chapter exercises reinforce the study material. Power Electronics Converters Modeling and Control addresses the needs of graduate students interested in power electronics, providing a balanced understanding of theoretical ideas coupled with pragmatic tools based on control engineering practice in the field. Academics teaching power electronics will find this an attractive course text and the practical points make the book useful for self tuition by engineers and other practitioners wishing to bring their knowledge up to date.

Grid Optimal Integration of Electric Vehicles: Examples with Matlab Implementation (Paperback, Softcover reprint of the... Grid Optimal Integration of Electric Vehicles: Examples with Matlab Implementation (Paperback, Softcover reprint of the original 1st ed. 2018)
Andres Ovalle, Ahmad Hably, Seddik Bacha
R2,427 Discovery Miles 24 270 Ships in 18 - 22 working days

This book is a compilation of recent research on distributed optimization algorithms for the integral load management of plug-in electric vehicle (PEV) fleets and their potential services to the electricity system. It also includes detailed developed Matlab scripts. These algorithms can be implemented and extended to diverse applications where energy management is required (smart buildings, railways systems, task sharing in micro-grids, etc.). The proposed methodologies optimally manage PEV fleets' charge and discharge schedules by applying classical optimization, game theory, and evolutionary game theory techniques. Taking owner's requirements into consideration, these approaches provide services like load shifting, load balancing among phases of the system, reactive power supply, and task sharing among PEVs. The book is intended for use in graduate optimization and energy management courses, and readers are encouraged to test and adapt the scripts to their specific applications.

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