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Comparative evaluation of control methods for Inductive Power Transfer

机译:感应电力传输控制方法的比较评估

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Inductive Power Transfer (IPT) has recently been proposed for application with Electric or Hybrid Electric Vehicles (EV/HEV), where a highly efficient system operation is demanded for the high-power transfer. Due to the high requirements on the regulation of the output power and the output voltage, and due to the large variations of the magnetic coupling, the control of these systems is a challenging task. In this paper, the frequency characteristics of a series-parallel compensated IPT system are discussed. Different control methods found in the literature are analyzed and a comparative evaluation of the current and voltage stress in the transmission coils, the resonant capacitors, and the semiconductors in the primary-side inverter is presented. It is shown that the dual control method offers a number of advantages in the controllability and potentially lower losses compared to the frequency control which is commonly used.
机译:最近提出了感应电力传输(IPT)用于电动或混合动力电动汽车(EV / HEV)的应用,其中高功率传输需要高效的系统运行。由于对输出功率和输出电压的调节有很高的要求,并且由于磁耦合的变化很大,因此控制这些系统是一项艰巨的任务。本文讨论了串并联补偿IPT系统的频率特性。对文献中发现的不同控制方法进行了分析,并对传输线圈,谐振电容器和一次侧逆变器中的半导体中的电流和电压应力进行了比较评估。结果表明,与通常使用的频率控制相比,双重控制方法在可控制性方面具有许多优势,并且损耗可能更低。

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