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Design methodology of the power receiver with high efficiency and constant output voltage for megahertz wireless power transfer

机译:高效率和恒定输出电压的兆赫无线电力传输功率接收器的设计方法

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Megahertz (MHz) wireless power transfer (WPT) has been widely studied due to its lighter and more compact system and higher spatial freedom. This paper proposes a design methodology of the power receiver with high efficiency and constant output voltage in MHz WPT systems. The power receiver consists of four parts, the receiving coil, the Class E rectifier, the buck converter and the DC load. Firstly, the inductance, equivalent series resistance (ESR) and the coupling coefficients are formulated based on the physical model of the coupling coils. The Class E rectifier and the buck converter are also derived and analyzed. Secondly, the receiving coil and the Class E rectifier are designed and optimized simultaneously to maximize the efficiency while the buck converter is designed to works in a self-regulation mode to provide the constant output voltage. The system parameters design is formulated as an optimization problem and solved using the Genetic Algorithm (GA). Finally, simulation tool Advanced Design System (ADS) is used to verify the proposed design methodology.
机译:兆赫(MHz)无线功率传输(WPT)由于其更轻巧,更紧凑的系统以及更高的空间自由度而得到了广泛的研究。本文提出了在MHz WPT系统中具有高效率和恒定输出电压的功率接收器的设计方法。受电器包括接收线圈,E类整流器,降压转换器和直流负载四个部分。首先,基于耦合线圈的物理模型,确定了电感,等效串联电阻(ESR)和耦合系数。还推导并分析了E类整流器和降压转换器。其次,同时设计和优化接收线圈和E类整流器,以最大程度地提高效率,而降压转换器则设计为以自调节模式工作,以提供恒定的输出电压。系统参数设计被公式化为一个优化问题,并使用遗传算法(GA)解决。最后,使用仿真工具高级设计系统(ADS)来验证所提出的设计方法。

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