Distribution Network Reconfiguration Based on SOCP Considering the Access of Photovoltaic Electric Vehicle Charging Tower

Guo-qiang Sun, Jun-Ping Jiang, Lexiang Cheng, Chunnin Wang, Honghua Xu, Zhi-nong Wei, Haixiang Zang
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引用次数: 2

Abstract

With the popularization and application of renewable energy, the number of electric vehicles is increasing rapidly. The corresponding electric vehicle charging pile changes from decentralized to centralized charging tower. In this paper, a second order cone model based on scenarios considering the uncertainty of photovoltaic electric vehicle charging tower is proposed. Firstly, scenarios are obtained by Latin hypercube sampling for photovoltaic and electric vehicles. Secondly, the second order cone model is discretized to multiple scenarios and the expected value of active power loss of all scenarios is selected as an objective function. Finally, the effectiveness and robustness of the model are tested by IEEE-33 system example. The influence of photovoltaic electric vehicle charging tower is also discussed.
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考虑光伏电动车充电塔接入的基于SOCP的配电网重构
随着可再生能源的普及和应用,电动汽车的数量迅速增加。相应的电动汽车充电桩由分散式变为集中式充电塔。本文提出了一种考虑光伏电动汽车充电塔不确定性的二次锥模型。首先,采用拉丁超立方体采样方法获得光伏和电动汽车的场景。其次,将二阶锥模型离散为多个场景,选取各场景有功损耗期望值作为目标函数;最后,通过IEEE-33系统实例验证了该模型的有效性和鲁棒性。并讨论了光伏汽车充电塔的影响。
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