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A Methodology for Optimization of Power Systems Demand Due to Electric Vehicle Charging Load

机译:电动汽车充电负荷对电力系统需求的优化方法

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This paper presents a methodology of optimizing power systems demand due to electric vehicle (EV) charging load. Following a brief introduction to the charging characteristics of EV batteries, a statistical model is presented for predicting the EV charging load. The optimization problem is then described, and the solution is provided based on the model. An example study is carried out with error and sensitivity analysis to validate the proposed method. Four scenarios of various combinations of EV penetration levels and charging modes are considered in the study. A series of numerical solutions to the optimization problem in these scenarios are obtained by serial quadratic programming. The results show that EV charging load has significant potential to improve the daily load profile of power systems if the charging loads are optimally distributed. It is demonstrated that flattened load profiles may be achieved at all EV penetration levels if the EVs are charged through a fast charging mode. In addition, the implementation of the proposed optimization is discussed with analyses on the impact of travel pattern and the willingness of customers.
机译:本文提出了一种由于电动汽车(EV)充电负载而优化电力系统需求的方法。在简要介绍了EV电池的充电特性之后,提出了用于预测EV充电负载的统计模型。然后描述优化问题,并基于模型提供解决方案。通过误差和灵敏度分析进行了实例研究,以验证所提出的方法。研究中考虑了电动汽车渗透率水平和充电模式的各种组合的四种情况。通过串行二次编程获得了在这些情况下优化问题的一系列数值解。结果表明,如果充电负荷得到最佳分配,电动汽车的充电负荷将具有极大的潜力来改善电力系统的日常负荷状况。结果表明,如果通过快速充电模式对电动汽车进行充电,则可以在所有电动汽车普及率水平上实现平坦的负载曲线。此外,还通过分析出行方式的影响和客户的意愿来讨论所提出的优化方案的实施。

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