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Impacts of electric vehicles on the transient voltage stability of distribution network and the study of improvement measures

机译:电动车对配电网瞬态电压稳定性的影响及改进措施研究

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Electric vehicles connected directly to the distribution network are expected to increase the base electric loads and reduce the stability of a power system. Meanwhile, equipped with bidirectional battery chargers, electric vehicles can work in V2G mode, as spinning reserve, and enhance grid stability. This paper discusses the charger technologies, requirements and proposes transient voltage stability margin index considering the impacts of dynamic loads on the transient voltage stability grid. Based on the index, the paper evaluates and compares the impacts of electric vehicles charging loads, static loads and combined loads on the transient voltage stability of distribution network and proposes the improvement of considering the V2G mode for the transient voltage instability situation of electric vehicle charging. The model of bidirectional battery chargers and IEEE16 bus test systems are performed by MATLAB & SimPowerSystems, and the availability of the index is confirmed.
机译:预计直接连接到配电网络的电动车辆将增加基础电负载并降低电力系统的稳定性。 同时,配备双向电池充电器,电动汽车可以在V2G模式下工作,作为纺纱储备,提高电网稳定性。 本文讨论了充电器技术,要求,并提出了考虑动态负载对瞬态电压稳定电网的影响的瞬态电压稳定性边缘指数。 基于该指数,纸张评估并比较电动车辆充电负荷,静电负载和组合负载对分配网络的瞬态电压稳定性的影响,并提出了考虑电动车辆充电瞬态电压不稳定情况的V2G模式的改进 。 双向电池充电器和IEEE16总线测试系统的模型由Matlab和SimPowersystems执行,并确认索引的可用性。

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