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Dynamic electric vehicles charging load allocation strategy for residential area

机译:动态电动车辆住宅区充电载荷分配策略

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A large amount of electric vehicles (EVs) charging load will bring significant impact to the power system. An appropriate resource allocation strategy is required for securing the power system safety and satisfying EVs charging demand. This paper proposed a power coordination allocation strategy of EVs’ in distribution systems. The strategy divides the allocation into two stages. The first stage is based on scores assigned to EVs through an entropy method, whereas the second stage allocates energy according to EV’s state of charge. The charging power is delivered in order to maximize EV users’ satisfaction and fairness without violation of grid constraints. Simulation on a typical power-limited residential distribution network proves the effectiveness of the strategy. The analysis re- sults indicate that compared with traditional methods, EVs, which have higher charging requirement and shorter available time will get more energy delivered than others. The root- mean-square-error (RMSE) and standard-deviation (SD) results prove the effectiveness of the methodology for improving the balance of power delivery.
机译:大量电动车辆(EVS)充电负荷将对电力系统带来显着影响。确保电力系统安全性并满足EVS充电需求所需的适当资源分配策略。本文提出了EVS分配系统的动力协调分配策略。该策略将分配分为两个阶段。第一阶段基于通过熵方法分配给EV的分数,而第二阶段根据EV的充电状态分配能量。递送充电权力,以最大限度地提高EV用户的满意度和公平而不违反电网限制。典型电力有限住宅分销网络上的仿真证明了该策略的有效性。分析结果表明,与传统方法相比,EVS,具有更高的充电需求和更短的可用时间将获得比其他方式更多的能量。根均方误差(RMSE)和标准偏差(SD)结果证明了改善电力交付平衡的方法的有效性。

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