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Optimal control of on-board PEV chargers considering distribution line capacity and building load imbalance

机译:考虑配电线路容量和建筑物负载不平衡的车载PEV充电器的最优控制

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This paper presents an optimal charging method for plug-in electric vehicles (PEVs) with single-phase on-board chargers that are connected to a large apartment buildings. The objective of the optimal charging is to minimize the total line power loss in a distribution network while taking into account the distribution line capacity and the three-phase building load imbalance. Using the inherent capability of the associated power electronics, the single-phase PEV chargers operating within capacity limits provide reactive power to minimize the power loss. The single-phase charging power is also controlled differently in time to mitigate the three-phase building load imbalance. For the active and reactive power control of the PEV charges, an optimization problem is formulated and solved using a linear programming algorithm with a substantial reduction in the simulation time. Based on a theoretical analysis performed on a simple distribution network, simulation case studies compare the conventional and proposed PEV control methods, to demonstrate that the objectives can be effectively achieved under various grid conditions.
机译:本文为连接到大型公寓楼的单相车载充电器的插电式电动汽车(PEV)提供了一种最佳充电方法。最佳充电的目的是在考虑配电线路容量和三相建筑物负荷不平衡的同时,将配电网络中的总线路功率损耗降至最低。利用相关电力电子设备的固有能力,在容量极限内运行的单相PEV充电器可提供无功功率,以最大程度地降低功率损耗。单相充电功率在时间上也受到不同控制,以减轻三相建筑物负载的不平衡。对于PEV充电的有功和无功功率控制,使用线性编程算法制定并解决了优化问题,并且大大减少了仿真时间。基于在简单配电网络上进行的理论分析,仿真案例研究比较了传统和建议的PEV控制方法,以证明在各种电网条件下都能有效实现目标。

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