Plug in electric vehicles in smart grids : integration techniques
著者
書誌事項
Plug in electric vehicles in smart grids : integration techniques
(Power systems)
Springer, c2015
大学図書館所蔵 全2件
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  愛媛
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  佐賀
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注記
Includes bibliographical references
内容説明・目次
内容説明
This book focuses on the state of the art in worldwide research on applying optimization approaches to intelligently control charging and discharging of batteries of Plug-in Electric Vehicles (PEVs) in smart grids. Network constraints, cost considerations, the number and penetration level of PEVs, utilization of PEVs by their owners, ancillary services, load forecasting, risk analysis, etc. are all different criteria considered by the researchers in developing mathematical based equations which represent the presence of PEVs in electric networks. Different objective functions can be defined and different optimization methods can be utilized to coordinate the performance of PEVs in smart grids. This book will be an excellent resource for anyone interested in grasping the current state of applying different optimization techniques and approaches that can manage the presence of PEVs in smart grids.
目次
Overview of Plug-in Electric Vehicle Technologies.- Wireless Power Transfer (WPT) for Electric Vehicles (EVs) - Present and Future Trends.- Planning, Control, and Management Strategies for Parking Lots for PEVs.- Testbed Design and Co-simulation of PEV Coordination Schemes over Integrated Fiber-Wireless Smart Grid Communications Infrastructures.- Cyber Security Issues of Plug-in Electric Vehicles in Smart Grid.- Impact Evaluation of Plug-in Electric Vehicles on Power System.- Strategies for Plug-In Electric Vehicle-to-Grid (V2G) and Photovoltaics (PV) for Peak Demand Reduction in Urban Regions in a Smart Grid Environment.- PEV Load and its Impact on Static Voltage Stability.- Smart Energy Management in Microgrid with Wind Power Generators and Plug-in Electric Vehicles.- Effects of PEV Penetration on Voltage Unbalance.- Using Plug-in Electric Vehicles to Implement Ancillary Services in Smart Distribution Grids.
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