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Direct current driving impedance matching method for rectenna using medical implant communication service band for wireless battery charging

机译:利用医疗植入通信服务频段为无线电池充电的整流天线直流驱动阻抗匹配方法

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摘要

This study proposes a direct-current (DC) driving impedance matching method for rectennas for the wireless charging of implantable lithium-ion (Li-ion) rechargeable batteries using the medical implant communication service band. Unlike the traditional method, which uses only the DC resistive load or battery potential, the proposed method adopts the output DC current of the dual-diode rectifiers to establish a simple equivalent model for wireless battery charging. Using this model, the optimised impedance matching network of the rectenna is derived to maximise efficiency within the charging range of a Liion battery. For 10 dBm input radio-frequency (RF) power, the highest RF-to-DC conversion efficiency of the traditional matching method is 22.3%. For the proposed method, the RF-to-DC conversion efficiency is > 75% in the potential range of 3.7 to 4.2 V, which is the range used for over 90% of the charging duration. The best battery charging efficiency was 76.2% at a transmission distance of 50 cm.
机译:这项研究提出了一种用于整流天线的直流(DC)驱动阻抗匹配方法,用于使用医疗植入物通信服务频段对可植入锂离子(Li-ion)可充电电池进行无线充电。与仅使用直流电阻性负载或电池电势的传统方法不同,该方法采用双二极管整流器的输出直流电流来为无线电池充电建立简单的等效模型。使用该模型,可以得出整流天线的优化阻抗匹配网络,以在锂离子电池的充电范围内最大化效率。对于10 dBm输入射频(RF)功率,传统匹配方法的最高RF到DC转换效率为22.3%。对于所提出的方法,在3.7至4.2 V的电势范围内,RF-DC转换效率> 75%,这是充电持续时间超过90%的范围。在50厘米的传输距离下,最佳电池充电效率为76.2%。

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