An Improved Pulse Density Modulation Control for A Semi Active Rectifier in Wireless Power Transfer with LC/S Compensation

Veli Yenil, S. Cetin
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Abstract

This paper proposes an improved pulse density modulation (PDM) control for a semi active rectifier (SAR) in wireless power transfer (WPT) with LC/S compensation. In order to improve the output regulation performance of the WPT converter, an improved pulse density modulation (PDM) is used, and its control signals are applied to the switches of the SAR. Based on the improved PDM control, the pulse sequence of the SAR is distributed more evenly compared to the traditional PDM. Thus, the output voltage ripple of the WPT converter is decreased and the output current ripple of the high frequency inverter (HFI) is decreased as well. The soft switching conditions can be achieved for both the SAR and HFI switches. In addition, since the control is applied only to the receiving side, there is no necessary for the communication devices. A simulation study is carried out to verify the performance of the improved PDM control and compared with the traditional PDM control. Based on the simulation results, the ripples of the output voltage as well as the output current ripples of the HFI are effectively reduced by using the improved PDM. Finally, the experimental results are presented to validate the effectiveness of the proposed control method.
LC/S补偿无线输电半有源整流器的改进脉冲密度调制控制
提出了一种改进的脉冲密度调制(PDM)控制方法,用于无线功率传输(WPT)中具有LC/S补偿的半有源整流器(SAR)。为了提高WPT变换器的输出调节性能,采用改进的脉冲密度调制(PDM),并将其控制信号应用于SAR的开关,使SAR的脉冲序列分布比传统的PDM更加均匀。这样,WPT变换器的输出电压纹波减小,高频逆变器的输出电流纹波也减小。SAR和HFI开关均可实现软开关条件。此外,由于控制仅应用于接收端,因此不需要通信设备。通过仿真研究验证了改进PDM控制的性能,并与传统PDM控制进行了比较。仿真结果表明,改进后的PDM有效地降低了HFI输出电压的纹波和输出电流的纹波。最后给出了实验结果,验证了所提控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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