考虑电动汽车充电桩无功功率的充电站优化调度策略

Zhong-cheng Zhao, Guan Wang, Haoran Zhao, Bo Li, Suxian Liu, Hanliang Lin
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摘要

随着电动汽车的普及,大规模电动汽车接入配电网的影响愈发明显。在此背景下,充分考虑电动汽车的时空分布特点和充电站与电网的有功与无功交互能力,提出了一种考虑电动汽车充电桩无功响应的充电站实时滚动优化调度策略。建立双层模型,从时间和空间上对充电站的有功功率和无功功率进行优化调度。采用二次规划和二次锥规划分别求解上、下模型。最后,采用改进后的IEEE33节点配电网系统进行仿真。仿真结果表明,该策略能有效减小系统负载峰谷差,降低系统网络损耗,提高系统电压水平等。
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Optimal Scheduling Strategy of Charging Station Considering Reactive Power of Electric Vehicle Charging Pile
With the popularity of electric vehicles, the impact of large-scale electric vehicle access to the distribution network has become more obvious. In this context, a real-time rolling optimization scheduling strategy for charging stations that takes into account the reactive power response of electric vehicle charging piles is proposed, fully considering the space-time distribution characteristics of electric vehicles and the active and reactive interaction capabilities between charging stations and the grid. Establish a two-layer model to optimize the scheduling of the active and reactive power of the charging station in time and space. The quadratic programming and the second-order cone programming are used to solve the upper and lower models respectively. Finally, the improved IEEE33 node distribution network system is used for simulation. The simulation results show that the strategy can effectively reduce the system load peak-valley difference and reduce the system network loss, improve system voltage level, etc.
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