Basic study of transmitting power control method without signal communication for Wireless In-Wheel Motor via magnetic resonance coupling

D. Gunji, T. Imura, H. Fujimoto
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引用次数: 25

Abstract

In order to improve reliability and safety of an In-Wheel Motor, the Wireless In-Wheel Motor (W-IWM) using magnetic resonance coupling has been proposed. Transmitting power of the W-IWM is controlled by the primary inverter and the secondary converter. One of a technical issue of the W-IWM is transmitting power variation due to the load power variation and the coupling coefficient variation. In this paper, we propose feedback control method of the transmitting power on the primary side using primary voltage margin. The primary voltage margin can be measured by the primary current. The proposed method requires no signal communication between the primary side and the secondary side. The effectiveness of the proposed method is verified by simulation and experiment.
基于磁共振耦合的无线轮毂电机无信号传输功率控制方法的基础研究
为了提高轮毂电机的可靠性和安全性,提出了一种采用磁共振耦合的无线轮毂电机。W-IWM的发射功率由一次逆变器和二次逆变器控制。由于负载功率的变化和耦合系数的变化而引起的传输功率变化是W-IWM的技术问题之一。本文提出了利用一次电压余量对一次侧发射功率进行反馈控制的方法。一次电压裕度可以通过一次电流来测量。该方法不需要主次侧之间的信号通信。仿真和实验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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