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High-Order Network Based General Modeling Method for Improved Transfer Performance of the WPT System

机译:基于高阶网络的常规建模方法,提高WPT系统的转移性能

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摘要

In wireless power transfer system, zero phase angle (ZPA), zero voltage switching (ZVS), load-independent output voltage, and current are key to improve transfer performance, like efficiency and output power over load change. More concerned, it is hard to realize those expected electrical characteristics in a topology simultaneously. To solve the issue, this article proposes a general modeling method based on the high-order resonant network. The equivalent impedance of passive components in each circuit branch is replaced by jX and then, according to the analysis of Kirchhoff principle, the conditions to realize load-independent output and simplified calculation of input impedance are given out. Hence, the proper passive components can be chosen to get expected electrical characteristics. A specific prototype, using the proposed modeling method for parameter design, is implemented to verify the validity of proposed modeling method. In the prototype, load-independent constant voltage and constant current modes can be switched by restructuring the passive network; meanwhile, ZPA or ZVS could also be realized by regulating only one component. The experimental results fit well with the theoretical analysis.
机译:在无线电力传输系统中,零相位角(ZPA),零电压切换(ZVS),负载无关的输出电压和电流是提高传输性能的关键,如效率和输出电源超过负载变化。更有关心,很难同时实现拓扑中的那些预期的电气特性。为了解决问题,本文提出了一种基于高阶谐振网络的一般建模方法。每个电路分支中的被动部件的等效阻抗由JX代替,然后,根据Kirchhoff原理的分析,给出了实现无关输出和简化输入阻抗的简化计算的条件。因此,可以选择适当的被动组件以获得预期的电特性。使用所提出的参数设计建模方法的特定原型是实现了验证所提出的建模方法的有效性。在原型中,可以通过重组无源网络来切换负载无关的恒定电压和恒定电流模式;同时,也可以通过仅调整一个组件来实现ZPA或ZV。实验结果与理论分析均匀。

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