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A time-domain model of a plug-in electric vehicle battery charger

机译:插入式电动汽车电池充电器的时域模型

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The primary focus of analyzing the widespread adaptation of plug-in electric vehicles (PEV) has been to determine what effect, if any, PEV battery charging will have on infrastructure loading and power quality. To date, very little research has been performed to determine: 1) the potential impact of normal utility system operation, e.g. switching of shunt capacitor banks, system voltage variations, etc. on the performance of PEV battery chargers or 2) how multiple PEV chargers interact with one another from a harmonic current injection perspective. Time-domain simulations are required to assess such impacts; however, detailed time-domain models of modern PEV chargers are not readily available in the literature. The following paper presents a detailed EMTP-RV model of an onboard Level 1 PEV charger that can be used to perform detailed system integration assessment of PEV chargers. Model results are validated using measurement data from an actual Level 1 on-board charger.
机译:分析插电式电动汽车(PEV)的广泛适应性的主要重点是确定PEV电池充电对基础设施负荷和电能质量的影响(如果有)。迄今为止,很少进行研究来确定:1)正常公用事业系统运行的潜在影响,例如:并联电容器组的切换,系统电压变化等对PEV电池充电器的性能的影响;或2)从谐波电流注入的角度来看,多个PEV充电器如何相互影响。需要时域仿真来评估这种影响;但是,现代PEV充电器的详细时域模型在文献中并不容易获得。下文介绍了车载1级PEV充电器的详细EMTP-RV模型,该模型可用于执行PEV充电器的详细系统集成评估。使用实际1级车载充电器的测量数据验证模型结果。

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