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A Dual-Sided Control Strategy Based on Mode Switching for Efficiency Optimization in Wireless Power Transfer System

机译:基于模式切换的双面控制策略在无线电力传输系统中效率优化

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摘要

Transfer efficiency of a wireless power transfer (WPT) system is tightly related to the load, which varies greatly in a wide range during the charging process. Generally speaking, dual-sided control strategies are commonly applied to overcome the load variation and improve system efficiency. However, the system may suffer from hard switching, high control complexity, and auxiliary dc/dc converters. In this article, a dual-sided control strategy based on mode switching is proposed to approach an optimal load impedance, zero-voltage switching of all mosfets in WPT system, and a required output. In this control strategy, the output voltage of the inverter is adjusted in a wide range by switching the operation mode of the inverter to approach the optimal load impedance. The output current/voltage is regulated by the active rectifier control. Besides, a novel phase-locked method is proposed for the semi-bridgeless active rectifier control, which is simpler compared with the traditional phase-locked method. Finally, a 500-W prototype is built to verify the theoretical analysis, and the peak system efficiency of 93.9% is gained with k = 0.23.
机译:无线电力传输(WPT)系统的传输效率与负载紧密相关,在充电过程中在宽范围内变化大大变化。一般来说,通常应用双面控制策略来克服负载变化并提高系统效率。然而,系统可能遭受硬开关,高控制复杂度和辅助DC / DC转换器。在本文中,提出了一种基于模式切换的双面控制策略来接近WPT系统中所有MOSFET的最佳负载阻抗,零电压切换,以及所需的输出。在该控制策略中,通过切换逆变器的操作模式来接近最佳负载阻抗,在宽范围内调节逆变器的输出电压。输出电流/电压由有源整流器控制调节。此外,提出了一种新的锁相方法,用于半无桥接有源整流控制,与传统的锁相方法相比更简单。最后,建立了500-W的原型以验证理论分析,93.9%的峰值系统效率随k = 0.23获得。

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