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Characterisation of High Frequency Inductive Power Transfer Receivers Using Pattern Recognition on the Transmit Side Waveforms

机译:使用发射侧波形上的模式识别来表征高频感应功率传输接收器

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This paper demonstrates the characterisation of inductively coupled receivers for high frequency inductive power transfer (HF-IPT) systems using pattern recognition on the inverter waveforms at the transmit side. The impedance reflected by the candidate receivers to the transmit coil was estimated using a model programmed to associate the experimental drain-voltage waveforms of the inverter when it drives a receiver under test to those when driving known loads. The necessity of employing this technique is due to the difficulty of accurately measuring current and voltage across the coil given the parasitic effects of probing and the precise skewing required to measure an impedance, especially at high Q-factor. The proposed technique is convenient for characterising and comparing the impedance reflected by candidate receivers for a particular application where there is a choice to be made with respect to the rectifier topologies and semiconductor technologies. Experimental results, using a 13.56 MHz 100 W inductive power transfer system, were obtained for a full-wave Class D rectifier using silicon (Si) and silicon carbide (SiC) Schottky diodes, and two Class E rectifiers using SiC diodes.
机译:本文演示了在发射侧逆变器波形上使用模式识别的高频感应功率传输(HF-IPT)系统感应耦合接收器的特性。使用编程模型将候选接收器反射到发射线圈的阻抗估算为模型,该模型将逆变器驱动被测接收机与驱动已知负载时的实验漏极电压波形相关联。使用这种技术的必要性是由于给定探测的寄生效应和测量阻抗所需的精确偏斜,尤其是在高Q系数下,难以精确测量线圈两端的电流和电压。所提出的技术对于表征和比较候选接收器反射的阻抗是很方便的,对于特定的应用,在这些应用中可以选择关于整流器拓扑和半导体技术的选择。对于使用硅(Si)和碳化硅(SiC)肖特基二极管的全波D类整流器,以及使用SiC二极管的两个E类整流器,使用13.56 MHz 100 W感应功率传输系统获得了实验结果。

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