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Class E Power Amplifier Design and Optimization for the Capacitive Coupled Wireless Power Transfer System in Biomedical Implants

机译:生物医学植入物中电容耦合无线功率传输系统的E类功率放大器设计和优化

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The capacitive coupled wireless power transfer (CCWPT) operating at megahertz (MHz) frequency is broadly considered as the promising solution for low power biomedical implants. The class E power amplifier is attractive in MHz range wireless power transfer (WPT) applications due to zero voltage switching (ZVS) and zero voltage derivative switching (ZVDS) properties. The existing design of class E amplifier is investigated only for inductive resonant coupled (IRC) WPT systems; the modelling and optimization of the class E amplifier for CCWPT systems are not deliberated with load variation. Meanwhile, the variations in the coupling distance and load are common in real time applications, which could reduce the power amplifier (PA) efficiency. The purpose of this paper is to model and optimize the class E amplifier for CCWPT systems used in MHz range applications. The analytical model of PA parameters and efficiency are derived to determine the optimal operating conditions. Also, an inductive-capacitive-inductive (LCL) impedance matching network is designed for the robust operation of the PA, which improves the efficiency and maintains required impedance compression. The maximum efficiency of the proposed design reached up to 96.34% at 13.56 MHz and the experimental results are closely matched with the simulation.
机译:以兆赫(MHz)频率工作的电容耦合无线功率传输(CCWPT)被广泛认为是低功率生物医学植入物的有希望的解决方案。由于零电压开关(ZVS)和零电压微分开关(ZVDS)特性,E类功率放大器在MHz范围无线功率传输(WPT)应用中具有吸引力。 E类放大器的现有设计仅针对电感谐振耦合(IRC)WPT系统进行了研究。 CCWPT系统的E类放大器的建模和优化未考虑负载变化。同时,耦合距离和负载的变化在实时应用中很常见,这可能会降低功率放大器(PA)的效率。本文的目的是为MHz范围应用中的CCWPT系统建模和优化E类放大器。得出功率放大器参数和效率的分析模型,以确定最佳工作条件。此外,还设计了一种电感-电容-电感(LCL)阻抗匹配网络以实现PA的稳健运行,从而提高了效率并保持了所需的阻抗压缩。拟议设计的最大效率在13.56 MHz时达到96.34%,实验结果与仿真结果非常吻合。

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