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Real-time scheduling of electric vehicles charging in low-voltage residential distribution systems to minimise power losses and improve voltage profile

机译:实时调度低压住宅配电系统中的电动汽车充电,以最大程度地减少功率损耗并改善电压曲线

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摘要

Unscheduled charging of plenty of electric vehicles (EVs) might exert an adverse effect on the existing power grid, especially when the charging coincides with daily peak load at distribution level. In this study, a scalable real-time scheduling scheme for EV charging in low-voltage residential distribution system is proposed. Since most often, voltage drop would become a binding constraint when a distribution feeder is subject to a high EV penetration level, a scheduling method is first developed to increase the voltage safety margin. Then, a novel factor is derived to allow the scheduling to shift from voltage-safety-oriented to loss-minimisation-oriented, or vice versa, on demand of the EV penetration level. A number of charging scenarios were simulated to evaluate the proposed scheduling scheme. Simulation results verified that the proposed scheduling scheme is fast and efficient with circuit losses close to optimal at a low EV penetration level and voltage drops maintained within the tolerable limit at a high EV penetration level. The high scalability and effectiveness of the proposed scheme has made it suitable for coordinating large number of EV charging activities in real-time.
机译:大量电动汽车(EV)的计划外充电可能会对现有电网产生不利影响,尤其是当充电与配电级别的每日峰值负荷同时发生时。在这项研究中,提出了一种可扩展的实时调度方案,用于低压住宅配电系统中的EV充电。由于当配电馈线经受较高的EV渗透水平时,电压降通常会成为约束约束,因此首先开发了一种调度方法来增加电压安全裕度。然后,根据EV渗透水平的要求,得出一个新颖的因素,以允许调度从面向电压安全性的方向转变为面向损耗最小化的方向,反之亦然。模拟了许多充电方案,以评估所提出的调度方案。仿真结果证明,所提出的调度方案是快速有效的,在低EV渗透水平下电路损耗接近最佳,而在高EV渗透水平下压降保持在可容忍的极限内。该方案的高可扩展性和有效性使其适合于实时协调大量EV充电活动。

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