Smart City Gnosys

Smart city article details

Title Review And Prospect Of Key Techniques For Vehicle-Station-Network Integrated Operation In Smart City; [智慧城市车-站-网一体化运行关键技术研究综述及展望]
ID_Doc 46421
Authors Wang H.; Yuan J.; Chen Z.; Ma Y.; Dong H.; Yuan S.; Yang J.
Year 2022
Published Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 37, 1
DOI http://dx.doi.org/10.19595/j.cnki.1000-6753.tces.211285
Abstract With the development of urban green transportation, optimizing and regulating electric vehicle (EV) clusters to participate in the demand response of the distribution network has become a trend, and a vehicle-station-network integrated operation structure of the smart city has been gradually formed. Under this background, this paper systematically reviews the current situation and progress of vehicle-station-network integrated operation, combining with the latest research results in the four fields: spatial and temporal distribution prediction of load demand, “station-network” collaborative deployment and management, “station-vehicle” orderly guidance strategy and “vehicle-network” interactive response. Firstly, the law of charging demand is analyzed, and the advantages and limitations of charging load and traffic load forecasting methods are summarized. Secondly, the research on the network layout of charging facilities and the vehicles to grid (V2G) technique is reviewed from the “station-network” coordination level. Thirdly, the path planning and pricing mechanism issues involved in the orderly guidance of EVs under the transportation-electricity coupling network model are explored. Thereafter, the “vehicle-grid” interactive response technology is discussed from the aspects of the schedulable capability evaluation of EV, reliability and economy of distribution network, and relevant application demonstrations are described. Finally, the existing problems and challenges in the vehicle-station-network integrated operation architecture are summarized, and prospects are made. © 2022, Electrical Technology Press Co. Ltd. All right reserved.
Author Keywords Electric vehicles; Interactive response; Transportation-electric coupling network; Vehicle-station-network integration


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