接入低压配电网的电动汽车公平充电策略

Mingming Liu, Paul McNamara, S. McLoone
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引用次数: 18

摘要

智能电网技术的发展和合适的充电策略是适应大量电动汽车在电网上充电的关键。本文提出了制定电动汽车充电优化问题的一般框架,并从充电公平的角度,在考虑电力系统约束的情况下,对三种不同的充电策略进行了研究和比较。两种策略是基于分布式算法的,即加性增乘性减(AIMD)和分布式价格反馈(DPF),而第三种策略是用于基准性能的理想集中式解决方案。通过对电动汽车渗透率为50%的典型住宅低压配电网的仿真,对算法进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fair charging strategies for EVs connected to a low-voltage distribution network
The development of smart grid technologies and appropriate charging strategies are key to accommodating large numbers of Electric Vehicles (EV) charging on the grid. In this paper a general framework is presented for formulating the EV charging optimization problem and three different charging strategies are investigated and compared from the perspective of charging fairness while taking into account power system constraints. Two strategies are based on distributed algorithms, namely, Additive Increase and Multiplicative Decrease (AIMD), and Distributed Price-Feedback (DPF), while the third is an ideal centralized solution used to benchmark performance. The algorithms are evaluated using a simulation of a typical residential low voltage distribution network with 50% EV penetration.
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