A Novel LCC-CLCC Resonant Tuning Network for Light-Load Conditions in Wireless Power Transfer Systems

S. Harave, O. Onar, Mostak Mohammad, V. Galigekere, G. Su
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Abstract

In wireless power transfer (WPT) systems, voltage and current distortions are observed at the vehicle side rectifier when power flow is from grid to vehicle (G2V) under light load conditions. These distortions can increase switching losses and decrease the overall efficiency of the WPT system. To address this issue, this paper proposes adding a higher value inductor in series with the original LCC tuning network at the vehicle side. However, increasing the series inductance causes the input impedance and phase angle to move away from the resonant frequency. To solve this problem, a capacitor is added in series to tune out the difference between the original and modified inductor values. This series tuning capacitor also improves the power factor and brings the input impedance and phase angle back to the resonant frequency. The traditional LCC-LCC and proposed LCC-CLCC WPT systems are compared and analyzed analytically, and simulated in a MATLAB/Simulink environment to verify parameters such as efficiency and power transfer capacity. An experimental prototype is implemented and compared with the simulation. The obtained results confirm the validity of the proposed method.
一种用于无线电力传输系统轻载条件下的新型LCC-CLCC谐振调谐网络
在无线电力传输(WPT)系统中,在轻负载条件下,当电力从电网流向车辆(G2V)时,在车辆侧整流器处观察到电压和电流畸变。这些失真会增加开关损耗,降低WPT系统的整体效率。为了解决这个问题,本文提出在车辆侧与原始LCC调谐网络串联增加一个高值电感器。然而,增加串联电感会导致输入阻抗和相位角远离谐振频率。为了解决这个问题,在串联中增加了一个电容器,以消除原始和修改后的电感值之间的差异。该系列调谐电容器还提高了功率因数,使输入阻抗和相位角回到谐振频率。对传统的LCC-LCC和提出的LCC-CLCC WPT系统进行了分析比较,并在MATLAB/Simulink环境下进行了仿真,验证了效率和功率传输能力等参数。设计了实验样机,并与仿真结果进行了比较。仿真结果验证了该方法的有效性。
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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