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Design metrics of compensation methods for contactless charging of electric vehicles

机译:电动汽车非接触充电补偿方法的设计指标

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Contactless power transfer (CPT) is an emerging topic which relies in high frequency resonant inverters to transfer power from a transmitter to a physically separated receiver inductively. Capacitive compensations on both the primary and secondary sides of a loosely coupled transformer are usually employed in recent researches in order to enhance the power transfer capability and the system efficiency. Achieving high efficiency, high power transfer and control capability of the output voltage and current of a compensated CPT circuit are conflicting criteria under variable loads and coupling coefficients. This paper studies the most important design metrics to choose the appropriate compensation method for high power applications. Series-series (SS) and series-parallel (SP) topologies as the two most economical configurations are focused in this paper and their main characteristics are extracted. It is investigated how to select the source frequency and compensation capacitors appropriately to achieve the best ideal functionality of the CPT system independent of output load and coupling coefficient variations, while providing the maximum efficiency. The design procedures are proposed and experimentally verified by a 3 kW prototype. Based on the results, SS configuration demonstrates as the best suited topology for charging the battery of electric vehicles (EVs).
机译:非接触式功率传输(CPT)是一个新兴的话题,它依靠高频谐振逆变器将功率从发射器感应地传输到物理上分离的接收器。为了提高功率传输能力和系统效率,最近的研究通常在松耦合变压器的一次侧和二次侧都采用电容补偿。在可变负载和耦合系数下,实现高效率,高功率传输以及补偿CPT电路的输出电压和电流的控制能力是相互矛盾的标准。本文研究了最重要的设计指标,以为大功率应用选择合适的补偿方法。本文重点介绍了串联-串联(SS)和串联-并联(SP)拓扑这两种最经济的配置,并提取了它们的主要特性。研究如何适当地选择源频率和补偿电容器,以实现CPT系统的最佳理想功能,而不受输出负载和耦合系数变化的影响,同时提供最大的效率。提出了设计程序,并通过3 kW原型进行了实验验证。根据结果​​,SS配置证明是最适合为电动汽车(EV)电池充电的拓扑。

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