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Evaluation of aggregate models of plug-in electric vehicles for primary frequency control

机译:用于初级频率控制的插入电动车骨料模型的评价

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This paper summarises and evaluates in detail aggregate models of plug-in electric vehicles (PEVs) for primary frequency control (PFC) through dynamic simulations. A basic aggregate model of PEVs for PFC is introduced and then gradually developed in the following steps: 1) technical characteristics of PEVs are incorporated into the model; 2) technical characteristics of distribution networks are formulated and added; 3) a strategy is described to well-design the frequency-droop controller of PEVs for PFC. Moreover, from an economic point of view, a method is presented to assess the benefits which could result from PEVs for PFC. Four simulation scenarios are defined to evaluate the impact of: 1) different PEV's penetration levels; 2) PEV's operating modes and constraints; 3) power consumed in the network during the PFC; 4) well-designed frequency droop controller, on the frequency response following a contingency event. Simulation results show that aggregate PEVs have a great potential not only to improve the frequency response, while preserving the overall stability, but also to save some costs associated with PFC.
机译:本文通过动态模拟总结和评估了初级频率控制(PFC)的插入电动车辆(PEV)的聚集模型。引入了PEVS的PEV基本综合模型,然后逐步开发以下步骤:1)PEV的技术特性纳入模型; 2)配制和添加分配网络的技术特征; 3)策略描述为熟练设计PEVS的PEFC频率下降控制器。此外,从经济的观点来看,提出了一种方法来评估PEFS用于PFC的益处。定义了四种模拟场景,以评估以下影响:1)不同的PEV渗透水平; 2)PEV的操作模式和约束; 3)PFC期间网络中消耗的功率; 4)设计良好的频率下垂控制器,在应急事件之后的频率响应。仿真结果表明,聚合PEVS具有很大的潜力,不仅可以提高频率响应,而在保持整体稳定性的同时,还可以节省与PFC相关的一些成本。

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