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A fast and efficient coordinated vehicle-to-grid discharging control scheme for peak shaving in power distribution system

机译:用于配电系统峰值剃料的快速有效的协调车辆触控式控制方案

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This study focuses on the potential role of plugin electric vehicles (PEVs) as a distributed energy storage unit to provide peak demand minimization in power distribution systems. Vehicle-to-grid (V2G) power and currently available information transfer technology enables utility companies to use this stored energy. The V2G process is first formulated as an optimal control problem. Then, a two-stage V2G discharging control scheme is proposed. In the first stage, a desired level for peak shaving and duration for V2G service are determined off-line based on forecasted loading profile and PEV mobility model. In the second stage, the discharging rates of PEVs are dynamically adjusted in real time by considering the actual grid load and the characteristics of PEVs connected to the grid. The optimal and proposed V2G algorithms are tested using a real residential distribution transformer and PEV mobility data collected from field with different battery and charger ratings for heuristic user case scenarios. The peak shaving performance is assessed in terms of peak shaving index and peak load reduction. Proposed solution is shown to be competitive with the optimal solution while avoiding high computational loads. The impact of the V2G management strategy on the system loading at night is also analyzed by implementing an off-line charging scheduling algorithm.
机译:本研究专注于插件电动车(PEV)作为分布式能量存储单元的潜在作用,以提供配电系统中的峰值需求最小化。车辆到网格(V2G)电源和当前可用的信息传输技术使公用事业公司能够使用此存储的能源。首先将V2G过程制定为最佳控制问题。然后,提出了两级V2G放电控制方案。在第一阶段,基于预测的加载轮廓和PEV移动性模型,确定了对V2G服务的峰值剃刮和持续时间的所需水平。在第二阶段,通过考虑实际的网格载荷和连接到电网的PEV的特性,在实时动态调整PEV的放电速率。使用具有不同电池和充电器评级的现实住宅分配变压器和PEV移动数据来测试最佳和提出的V2G算法,以及用于启发式用户案例场景的不同电池和充电器额定值。在峰值剃须指数和峰值负荷减少方面评估峰值剃料性能。提出的解决方案显示竞争最佳解决方案,同时避免高计算负载。通过实施离线充电调度算法,还分析了V2G管理策略对夜间系统加载的影响。

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