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Utilization of Electric Vehicles Connected to Distribution Substations for Peak Shaving of Utility Network Loads

机译:利用连接到配电变电站的电动汽车对电网负荷进行削峰

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Use of modern electric vehicles and their effective integration into power grids depends on the technologies applied around distribution substations. Distribution substations equipped with energy storing and V2G capability enable peak load shaving and demand response, which will reduce the need to make new investments into building new power sources or power grids to meet peak demand. This paper presents a distribution substation topology for utilizing electric vehicles as energy resource units for peak shaving of utility network loads. The topology allows bidirectional energy exchange among electric vehicles, battery pack energy storage devices and utility networks. The substation acts as a service provider in a microgrid. Functions of a microgrid application were simulated with MATLAB. The evaluation of the results has shown that electric vehicles can be effectively utilized for peak shaving of utility network loads. The results of the modelling and simulation were used for the development of a microgrid prototype. Assessment of capacities of electric vehicles showed that electric vehicles can provide short term support for the utility network.
机译:现代电动汽车的使用以及如何将其有效地集成到电网中,取决于配电变电站周围应用的技术。配备有储能和V2G功能的配电变电站可以实现峰值负荷削减和需求响应,从而减少了对建设新的电源或电网以满足峰值需求进行新投资的需求。本文提出了一种配电变电站拓扑结构,该拓扑结构利用电动车辆作为能源单位来对公用事业网络负荷进行调峰。该拓扑结构允许电动汽车,电池组储能设备和公用事业网络之间进行双向能量交换。变电站充当微电网中的服务提供商。用MATLAB仿真了微电网应用程序的功能。结果评估表明,电动汽车可以有效地用于公用事业网络负荷的峰值削减。建模和仿真的结果用于微电网原型的开发。对电动汽车容量的评估表明,电动汽车可以为公用事业网络提供短期支持。

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