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Research on Coordinated Charging and Influence of EV Based on Distributed Charge Control

机译:基于分布式电荷控制的EV协调充电与影响研究

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The large-scale un-coordinated charging electric vehicles (EV) will reduce the quality and reliability of power grid significantly. Centralized control can achieve the coordinated charging of EV. But cost of construction and maintenance of control system is increasing with the development of EVs. For the scattered distribution of EV, distributed control is more convenient to be realized. A coordinated charging method for decentralized charging control is proposed in this paper. During the peak load period, the charging pile to the default rules of EV charging part off without centralized control can realize the target of "peak load shifting". The preset condition is based on the State of Charge (SOC), and the little SOC with less probability is delayed charging. It is possible to avoid the case that the EV is not fully charged at the end of the charging. The proposed method can effectively avoid the surge of charging load after regulation. The simulation results show that the proposed method can effectively reduce the load difference between peak and valley, and reduce the negative impact of the large-scale EV charging on the grid.
机译:大型未协调的充电电动车(EV)将显着降低电网的质量和可靠性。集中控制可以实现EV的协调充电。但控制系统的建设和维护成本随着EV的发展正在增加。对于EV的分散分布,分布式控制更方便地实现。本文提出了一种用于分散充电控制的协调充电方法。在峰值负载期间,对EV充电部分的默认规则无集中控制的充电桩可以实现“峰值负荷移位”的目标。预设条件基于充电状态(SOC),并且具有较少概率的小SOC是延迟充电。可以避免EV在充电结束时EV完全充电的情况。该方法可以有效地避免调节后充电负荷的浪涌。仿真结果表明,该方法可以有效地降低峰值和谷之间的负载差,降低电网上大型EV充电的负面影响。

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