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Packetized Plug-In Electric Vehicle Charge Management

机译:打包式插电式电动汽车收费管理

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Plug-in electric vehicle (PEV) charging could cause significant strain on residential distribution systems, unless technologies and incentives are created to mitigate charging during times of peak residential consumption. This paper describes and evaluates a decentralized and “packetized” approach to PEV charge management, in which PEV charging is requested and approved for time-limited periods. This method, which is adapted from approaches for bandwidth sharing in communication networks, simultaneously ensures that constraints in the distribution network are satisfied, that communication bandwidth requirements are relatively small, and that each vehicle has fair access to the available power capacity. This paper compares the performance of the packetized approach to an optimization method and a first-come, first-served (FCFS) charging scheme in a test case with a constrained 500 kVA distribution feeder and time-of-use residential electricity pricing. The results show substantial advantages for the packetized approach. The algorithm provides all vehicles with equal access to constrained resources and attains near optimal travel cost performance, with low complexity and communication requirements. The proposed method does not require that vehicles report or record driving patterns, and thus provides benefits over optimization approaches by preserving privacy and reducing computation and bandwidth requirements.
机译:插电式电动汽车(PEV)充电可能会给住宅配电系统造成巨大压力,除非在住宅用电高峰期创造了减轻充电的技术和激励措施。本文描述并评估了分散式和“分组式”的PEV充电管理方法,在该方法中,要求并批准PEV充电在一定时间范围内。该方法与通信网络中带宽共享的方法相适应,可同时确保满足配电网络中的约束条件,通信带宽要求相对较小以及每个车辆都能公平使用可用功率容量。本文在一个受约束的500 kVA配电馈线和使用时间的居民用电价格的测试案例中,将分组方法的性能与一种优化方法和一种先来先服务(FCFS)充电方案进行了比较。结果显示了打包方法的实质优势。该算法为所有车辆提供了对受限资源的平等访问权,并获得了接近最佳的行驶成本性能,且复杂性和通信需求低。所提出的方法不需要车辆报告或记录驾驶模式,并且因此通过保留隐私并减少计算和带宽要求而提供优于优化方法的益处。

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