Optimal Frequency for Implantable Mid-field Wireless Power Transfer

Tang Danfeng, Chen Zhiying
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引用次数: 1

Abstract

Mid-field wireless power transmission technology is the latest method in the development of wireless power transmission. The purpose of this paper is to study the effects of tissue type, position offset, deflection angle and coil size on the optimal frequency of implantable mid-field wireless power transmission. In this study, the multi-layer organization model is taken as the main research object, and a transmission model with transmitting and receiving coils is established by using COMSOL Multiphysics finite element simulation software. The frequency of the system with the best transmission coefficient in various cases is calculated, and the influence of various factors on the optimal frequency is judged. The results show that the tissue type, position offset and angle deflection do not change the optimal frequency of the transmission system. But when the diameter of the transmitting antenna increases from 20 mm to 30 mm, the optimal frequency decreases from 2.06 GHz to 1.35 GHz.
植入式中场无线电力传输的最佳频率
中场无线电力传输技术是无线电力传输发展的最新方法。本文的目的是研究组织类型、位置偏移、偏转角度和线圈尺寸对植入式中场无线电力传输最佳频率的影响。本研究以多层组织模型为主要研究对象,利用COMSOL Multiphysics有限元仿真软件建立了带有发射线圈和接收线圈的发射模型。计算了各种情况下传输系数最佳的系统频率,并判断了各种因素对最佳频率的影响。结果表明,组织类型、位置偏移和角度偏转对传动系统的最优频率没有影响。但当发射天线直径从20 mm增加到30 mm时,最佳频率从2.06 GHz降低到1.35 GHz。
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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