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A new approach to distributed charging control for plug-in hybrid electric vehicles

机译:一种新的插入式混合动力电动汽车充电控制方法

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Plug-in hybrid electric vehicles (PHEV) tend to become more widespread in the next decades. However, large penetration of PHEVs will overload the distribution system. In smart grid, the charging of PHEVs can be controlled to reduce the peak load, which is known as demand side management (DSM). In this paper, we focus on the impact of PHEV charging on low-voltage transformers. The objective is to flatten the load curve of low-voltage transformers, while each consumer's requirement for their PHEV to be charged to the required level by their specified time is satisfied. We first formulate it as a convex optimization problem and then propose a distributed water-filling-based algorithm to solve it. Proofs of optimality and numerical simulations are given to demonstrate the effectiveness of our algorithm.
机译:插入式混合动力电动汽车(PHEV)在未来几十年中往往变得更加普遍。但是,PHEV的大渗透将过载分配系统。在智能电网中,可以控制PHEV的充电以减少峰值负载,称为需求侧管理(DSM)。在本文中,我们专注于PHEV充电对低压变压器的影响。目的是使低压变压器的负载曲线压平,而每个消费者对其PHEV的要求被其指定时间收取所需的水平。我们首先将其制定为凸优化问题,然后提出了一种分布式的基于水填充的算法来解决它。优化和数值模拟证明展示了我们算法的有效性。

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