引入分散的电动汽车充电协调电压调节

Olivier Beaude, Yujun He, Martin Hennebel
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引用次数: 41

摘要

本文研究了一种分散优化方法来协调电动汽车(EV)充电,从而有助于住宅配电馈线的电压控制。其目的是使用灵敏度矩阵方法维持EV功率注入功能的电压水平。在考虑EV对网络中所有节点的影响或仅对其连接点的局部邻域的影响时,分别采用全局和局部两种不同的方法对分散优化进行了测试。EV还可以异步或同步地更新它们的决策。虽然只有具有异步更新的全局方法在理论上被证明是收敛的,但使用博弈论的结果,模拟显示了其他算法的潜力,这些算法需要更少的迭代或更少的信息。最后,通过蒙特卡罗模拟,在广泛的电动汽车定位配置中,第一个分析也显示了与不协调充电或最近在文献中提出的“电压下降充电控制”相比的良好性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Introducing decentralized EV charging coordination for the voltage regulation
This paper investigates a decentralized optimization methodology to coordinate Electric Vehicles (EV) charging in order to contribute to the voltage control on a residential electrical distribution feeder. This aims to maintain the voltage level in function of the EV's power injection using the sensitivity matrix approach. The decentralized optimization is tested with two different methods, respectively global and local, when EV take into account their impact on all the nodes of the network or only on a local neighborhood of their connection point. EV can also update their decisions asynchronously or synchronously. While only the global approach with asynchronous update is theoretically proven to converge, using results from game theory, simulations show the potential of other algorithms for which fewer iterations or fewer informations are necessary. Finally, using Monte Carlo simulations over a wide range of EV localization configurations, the first analysis have also shown a promising performance in comparison with uncoordinated charging or with a “voltage droop charging control” recently proposed in the literature.
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