Load and Coupling Variations Analysis of Capacitive Power Transfer at 6.78MHz Operating Frequency for Biomedical Implantable Device

M. Meor, Y. Yusop, S. Saat, Huzaimah Husin, K. K. Hasan
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Abstract

This paper presents the design and analysis of load and coupling variations for a current Wireless Power Transfer (WPT) technique, known as Capacitive Power Transfer (CPT). Due to its strength, CPT becomes an effective and essential alternative to conservative technique, which is Inductive Power Transfer (IPT). It can compete IPT in industrial demand since it has a small number of component usage, uncomplicated topology, increases electromagnetic interference (EMI) shielding performance and robust to surrounding metallic elements. Class E power amplifier with the presence of π1b matching resonant circuit is applied in this work as a high frequency ac power source since it has the ability to perform dc-to-ac inversion efficiently. It supports the CPT system to attain a maximum power transmission. MATLAB software is used to design and simulate the CPT circuit; and the analysis is made up from the results. This proposed system able to generate 1W of output power by maintaining up to 98% efficiency at 6.78MHz operating frequency for Biomedical Implantable Device application. The analysis of load variation is in the range of 50Ω until 1kΩ; meanwhile for coupling variation is between 1mm to 15mm.
6.78MHz工作频率下生物医学植入装置电容性功率传输负载及耦合变化分析
本文介绍了当前无线功率传输(WPT)技术的负载和耦合变化的设计和分析,称为电容功率传输(CPT)。由于其强大的性能,CPT技术已成为传统的感应功率传输技术(IPT)的重要替代技术。它可以在工业需求中与IPT竞争,因为它具有少量的组件使用,不复杂的拓扑结构,提高电磁干扰(EMI)屏蔽性能和对周围金属元素的鲁棒性。本文采用π1b匹配谐振电路的E类功率放大器作为高频交流电源,因为它具有高效的交直流逆变能力。它支持CPT系统实现最大功率传输。利用MATLAB软件对CPT电路进行了设计和仿真;分析是由结果组成的。该系统能够在6.78MHz工作频率下产生1W的输出功率,并保持高达98%的效率,用于生物医学植入设备应用。载荷变化分析范围为50Ω ~ 1kΩ;同时,耦合变化在1mm ~ 15mm之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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