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首页> 外文期刊>Journal of Cleaner Production >Improving voltage unbalance of low-voltage distribution networks using plug-in electric vehicles
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Improving voltage unbalance of low-voltage distribution networks using plug-in electric vehicles

机译:使用插电式电动汽车改善低压配电​​网络的电压不平衡

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摘要

Plug-in electric vehicles are one of the clean technologies that have many advantages to overcome the problems of power systems for instance voltage unbalance in distribution networks. Considering coordinated or uncoordinated charging method, voltage unbalance factor can be improved or worsened. In real applications, most PEVs are connected to residential or commercial networks in the form of single-phase and they can be charged or discharged that leads to voltage unbalance. In this paper, the effect of PEVs on network voltage unbalance is investigated in the form of optimization problem. VUF is minimized as an objective function in different conditions, subject to network security and PEVs constraints, using PSO algorithm. VUF is minimized by optimally selecting the state of PEVs (charging or discharging), PEV point of connection (phase a, b or c) and charging/discharging rating power. Also, the impact of Uncoordinated and coordinated charging of PEVs on VUF is evaluated. Besides, the effectiveness of the proposed framework is studied based on an unbalanced three-phase distribution network. Finally, the obtained results show that coordinated charging/discharging of PEVs can significantly improve VUF value. (C) 2017 Published by Elsevier Ltd.
机译:插入式电动车辆是一种清洁技术,具有许多优点,可以克服电力系统的问题,例如配电网络中的电压不平衡。考虑协调或不协调的充电方法,可以改善或恶化电压不平衡因数。在实际应用中,大多数PEV以单相形式连接到住宅或商业网络,并且它们可能会充电或放电,从而导致电压不平衡。本文以优化问题的形式研究了PEV对电网电压不平衡的影响。使用PSO算法,在不同条件下,根据网络安全性和PEV约束,将VUF最小化为目标函数。通过最佳选择PEV的状态(充电或放电),PEV连接点(a,b或c相)和充电/放电额定功率,可将VUF降至最低。此外,评估了电动汽车不协调和协调充电对VUF的影响。此外,基于不平衡的三相配电网,研究了所提出框架的有效性。最后,获得的结果表明,PEV的协调充电/放电可以显着提高VUF值。 (C)2017由Elsevier Ltd.发布

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