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High-Input-Voltage High-Frequency Class E Rectifiers for Resonant Inductive Links

机译:用于谐振感应链路的高输入电压高频E类整流器

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摘要

The operation of traditional rectifiers such as half-wave and bridge rectifiers in wireless power transfer applications may be inefficient and can reduce the amount of power that is delivered to a load. An alternative is to use Class E resonant rectifiers that are known to operate efficiently at high resonant frequencies and at large input voltages. Class E rectifiers have a near sinusoidal input current which leads to an improved overall system performance and increased efficiency, especially that of the transmitting coil driver. This paper is the first to investigate the use of Class E resonant rectifiers in wireless power transfer systems based on resonant inductive coupling. A piecewise linear state-space representation is used to model the Class E rectifier including the rectifying diode’s forward voltage drop, its ON resistance, and the equivalent series resistance of the resonant inductor. Power quality parameters, such as power factor and total harmonic distortion, are calculated for different loading conditions. Extensive experimental results based on a 10-W prototype are presented to confirm the performed analysis and the efficient operation of the rectifier. An impressive operating efficiency of 94.43 has been achieved at a resonant frequency of 800 kHz.
机译:传统整流器(例如半波整流器和桥式整流器)在无线电力传输应用中的运行效率可能很低,并且可能会减少传递给负载的功率量。一种替代方法是使用E类谐振整流器,该整流器在高谐振频率和大输入电压下可高效运行。 E类整流器的输入电流接近正弦波,从而改善了整个系统的性能,并提高了效率,尤其是发射线圈驱动器的效率。本文是第一个研究E类谐振整流器在基于谐振感应耦合的无线电力传输系统中的使用的方法。分段线性状态空间表示法用于对E类整流器建模,包括整流二极管的正向压降,其导通电阻以及谐振电感器的等效串联电阻。针对不同的负载条件计算功率质量参数,例如功率因数和总谐波失真。提出了基于10W原型的大量实验结果,以确认进行的分析和整流器的高效运行。在800kHz的谐振频率下实现了94.43的惊人工作效率。

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