Study of the conducted emissions of an IPT system composed of an array of magnetically coupled resonators

José Alberto, U. Reggiani, L. Sandrolini
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引用次数: 3

Abstract

In this paper the conducted emissions generated by an inductive power transfer (IPT) system composed of an array of magnetically coupled stranded-wire resonators and powered by an H-bridge inverter (operating at a resonant frequency of 147kHz) are assessed for arrays with different numbers of resonators, different termination impedances and for a constant power of 5W absorbed by the termination impedance. It was found that the peak values of the disturbance voltage obtained through measurements, in the frequency range from 150kHz to 30MHz, depend on the equivalent impedance that represents the impedance of the array after removing the resonator connected to the power source. More specifically, the highest peak values of the disturbance voltage were found at 150kHz and 294kHz (the former frequency is close to the resonant frequency and the latter is its second harmonic) for an even number of resonators and a high termination impedance or for an odd number of resonators and a low termination impedance, situations which both correspond to a low value of the equivalent impedance. Finally, when a termination impedance close to the equivalent impedance of an infinite array of resonators is used, the disturbance voltage values are approximately the same for any number of resonators.
由一组磁耦合谐振器组成的IPT系统的传导发射研究
本文研究了以h桥逆变器为动力,由磁耦合绞线谐振器阵列组成的感应功率传输(IPT)系统(谐振频率为147kHz)在不同谐振器个数、不同终端阻抗和终端阻抗吸收功率为5W时产生的传导辐射。研究发现,在150kHz至30MHz的频率范围内,通过测量得到的扰动电压峰值取决于表示阵列阻抗的等效阻抗,该等效阻抗表示与电源相连的谐振器去除后的阻抗。更具体地说,谐振器数量为偶数且终端阻抗高,谐振器数量为奇数且终端阻抗低时,干扰电压的峰值分别出现在150kHz和294kHz(前者频率接近谐振频率,后者为谐振频率的二次谐波),这两种情况对应的等效阻抗值都较低。最后,当使用接近无限谐振器阵列等效阻抗的终端阻抗时,对于任意数量的谐振器,扰动电压值大致相同。
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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