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Phase-Locked Loop Combined With Chained Trigger Mode Used for Impedance Matching in Wireless High Power Transfer

机译:锁相环与链式触发模式相结合,用于无线大功率传输中的阻抗匹配

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In a wireless power transfer system (WPTS), the control technique of the active rectifier is vital for improving the transfer efficiency of the resonant network, expanding the operating range of the load, and increasing the power density. An indispensable component of such control technique is the accurate and reliable phase-locked method for the resonant current. However, the traditional phase-locked method based on the DSP controller tends to lose driver pulses, which might cause damage to the safe operation of the WPTS. This article illustrates the essential reason why the driver pulses lose and proposes a phase-locked loop combined with the chained trigger mode (PLL-CTM) that can lock the phase of the resonant current accurately and produce the driver pulses reliably. With the proposed PLL-CTM applied, the reliability of the WPTS can be enhanced tremendously. Furthermore, based on the PLL-CTM, this article also presents a double-side phase shift control (DPSC) strategy to achieve constant-current constant-voltage charging and minimize the power loss of the resonant network simultaneously. Finally, a 500-W WPT prototype is built to verify the feasibility of the DPSC with PLL-CTM. Benefiting from the DPSC with PLL-CTM, the WPTS not only obtains a high accuracy in steady state, but also achieves a good dynamic performance with the step change of R-L and R-Eref.
机译:在无线电力传输系统(WPTS)中,有源整流器的控制技术对于提高谐振网络的传输效率,扩大负载的工作范围并提高功率密度至关重要。这种控制技术必不可少的组成部分是用于谐振电流的准确而可靠的锁相方法。但是,基于DSP控制器的传统锁相方法往往会丢失驱动器脉冲,这可能会损坏WPTS的安全操作。本文说明了驱动器脉冲丢失的根本原因,并提出了一种与链式触发模式(PLL-CTM)相结合的锁相环,该锁相环可以准确地锁定谐振电流的相位并可靠地产生驱动器脉冲。借助提出的PLL-CTM,可以极大地提高WPTS的可靠性。此外,基于PLL-CTM,本文还提出了一种双面相移控制(DPSC)策略,以实现恒流恒压充电并同时最小化谐振网络的功率损耗。最后,构建了一个500 W WPT原型,以验证带有PLL-CTM的DPSC的可行性。受益于带有PLL-CTM的DPSC,WPTS不仅在稳态下具有很高的精度,而且随着R-L和R-Eref的阶跃变化而获得了良好的动态性能。

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