感应无线电力传输双独立控制

Utkarsh D. Kavimandan, S. Mahajan, C. W. van Neste
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引用次数: 3

摘要

磁耦合无线电力传输系统的功率传输和效率主要取决于工作频率、一次线圈和二次线圈之间的距离以及负载状况(即电池的充电状态)。人们提出了不同的技术来优化这些WPT系统的效率。大多数技术需要额外的硬件来在发送线圈和接收线圈之间传输数据。在本文中,提出的系统的初级(发射机)是通过调整一个可变电容来控制的。对耦合系数的动态变化进行了调谐,以保持初级电压和电流之间的相位角最小。对于接收器(二次),负载调节是通过实现带PWM控制的dc-dc转换器来实现的。由于两种控制策略都是独立实现的,因此不需要单独的通信硬件。利用MATLAB/Simulink对该方案进行了仿真。所提出的双控制系统的模拟结果产生了约85%的功率传输效率,尽管在负载和耦合系数的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual independent control for inductive wireless power transfer
The power transfer and efficiency of a magnetically coupled wireless power transfer system depends mainly on the frequency of operation, the distance between the primary and secondary coils, and the load condition (i.e. battery state-of-charge). Different techniques have been proposed to optimize the efficiency of these WPT systems. Most of the techniques require additional hardware to communicate data between the transmitting and the receiving coils. In this paper, the primary (transmitter) of the proposed system was controlled by tuning a variable capacitor. The tuning was performed for the dynamic changes in the coupling coefficient, which maintains a minimum phase angle between the primary voltage and current. For the receiver (secondary), load regulation was achieved by implementing a dc-dc converter with PWM control. Since both the control strategies are implemented independently, separate communication hardware is not required. The simulation of the proposed scheme was performed using MATLAB/Simulink. The simulated results of the proposed dual control system yielded a power transfer efficiency of ∼ 85% in spite of variations in the load and the coupling coefficient.
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