Ma, Zhongjing.

Decentralized Charging Coordination of Large-scale Plug-in Electric Vehicles in Power Systems [electronic resource] / by Zhongjing Ma. - 1st ed. 2020. - XXI, 238 p. 89 illus., 1 illus. in color. online resource.

Introduction -- Charging coordination via non-cooperative games -- Decentralized Charging coordination with battery degradation cost -- Charging coordination in capacity-constrained distribution networks -- Charging coordination based on auction games -- V2G coordination method via auction games.

This book focuses on the design of decentralized optimization methods applied to charging strategies for large-scale PEVs in electrical power systems. It studies several classes of charging coordination problems in large-scale PEVs by considering the distinct characteristics of PEV populations and electrical power systems, and subsequently designs decentralized methods based on distinct optimization schemes – such as non-cooperative games, mean-field games, and auction games – to achieve optimal/nearly optimal charging strategies. In closing, several performance aspects of the proposed algorithms, such as their convergence, computational complexity and optimality etc., are rigorously verified and demonstrated in numerical simulations. Given its scope, the book will benefit researchers, engineers, and graduate students in the fields of optimization, game theory, auction games, electrical power systems, etc., and help them design decentralized methods to implement optimal charging strategies in large-scale PEVs.

9789811376528

10.1007/978-981-13-7652-8 doi


Electric power production.
Control engineering.
Automotive engineering.
Game theory.
Electrical Power Engineering.
Control and Systems Theory.
Automotive Engineering.
Game Theory.

TK1001-1841

621.31