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Effect of Human Movement on Galvanic Intra-Body Communication during Single Gait Cycle

机译:人体运动对单步循环过程中电流内通信的影响

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Intra-body communication (IBC) is a communication system that uses human body as a signal transmission medium. From previous research, two coupling methods of IBC were concluded which are capacitive coupling and galvanic coupling. This paper investigates the effect of human movement on IBC using the galvanic coupling method. Because the human movement is control by the limb joint, the knee flexion angle during gait cycle was used to examine the influence of human movement on galvanic coupling IBC. The gait cycle is a cycle of people walking that start from one foot touch the ground till that foot touch the ground again. Frequency range from 300 kHz to 200MHz was swept in order to investigate the signal transmission loss and the result was focused on operating frequency 70MHz to 90MHz. Results show that the transmission loss varies when the knee flexion angle increased. The highest loss of signal at frequency range between 70MHz to 90 MHz was 69dB when the knee flexion angle is 50° and the minimum loss was 51dB during the flexion angle is 5°.
机译:体内通信(IBC)是一种使用人体作为信号传输介质的通信系统。从先前的研究中,结束了IBC的两种耦合方法,其是电容耦合和电流耦合。本文研究了使用电流耦合法对IBC对IBC的影响。由于人体运动由肢体接头控制,所以使用步态循环期间的膝部屈曲角度来检查人体运动对电催化偶联IBC的影响。步态周期是一段人们走路,从一只脚接触地面,直到那个脚再次接触地面。频率范围为300 kHz至200MHz以扫描信号传输损耗,结果集中在70MHz至90MHz上的工作频率。结果表明,当膝关节屈曲角度增加时,传输损耗变化。当膝关节屈曲角度为50°时,70MHz至90MHz的频率范围内的信号的最高损耗为69dB,并且在屈曲角度下最小损耗为51dB为5°。

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