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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >An Autonomous Impedance Adaptation Strategy for Wireless Power Transfer System Using Phase-Controlled Switched Capacitors
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An Autonomous Impedance Adaptation Strategy for Wireless Power Transfer System Using Phase-Controlled Switched Capacitors

机译:使用相控开关电容的无线电力传输系统自主阻抗适应策略

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摘要

The values of the capacitance and inductance on the primary side of a wireless power transfer (WPT) system need to be appropriately designed and accurately tuned for the system to work in the resonant state. To achieve this, in this article, a novel autonomous impedance adaptation (AIA) strategy is proposed to realize adaptive impedance matching for WPT systems using a phase-controlled switched capacitor (PCSCap) to exert the highest possible power transfer efficiency. The relationship between the input impedance characteristics and operating conditions, resonant or nonresonant, is analytically and quantitatively established, using the complex Gamma-plane. The input impedance angle is captured for the feedback control structure to adaptively adjust the equivalent capacitance of the PCSCap, so that the WPT system can operate in its resonant state, maximizing its power transfer efficiency. The proposed AIA method is designed to have a high impedance precision and large self-recovery margin. The effectiveness and advantages of the proposed PCSCap-based AIA mechanism are proven through simulation and experimentation, showing its great practicality and wide applicability in the WPT industry.
机译:无线电力传输(WPT)系统的初级侧的电容和电感的值需要适当地设计和准确地调整系统以在谐振状态下工作。为此,在本文中,提出了一种新颖的自主阻抗适应(AIA)策略来实现使用相控开关电容(PCSCAP)的WPT系统的自适应阻抗匹配,以发挥最高可能的功率传输效率。使用复杂的伽马平面分析和定量地建立输入阻抗特性和操作条件,谐振或非族化之间的关系。捕获输入阻抗角度,用于反馈控制结构以自适应地调整PCScap的等效电容,使得WPT系统可以以其谐振状态运行,最大化其功率传输效率。所提出的AIA方法旨在具有高阻抗精度和大的自恢复余量。通过仿真和实验证明了所提出的基于PCScap的AIA机制的有效性和优点,展示了WPT行业的实用性和广泛适用性。

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