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An Investigation on Ground Electrodes of Capacitive Coupling Human Body Communication

机译:电容耦合人体通信接地电极的研究

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Utilizing the body surface as the signal transmission medium, capacitive coupling human body communication (CC-HBC) can achieve a much higher energy efficiency than conventional wireless communications in future wireless body area network (WBAN) applications. Under the CC-HBC scheme, the body surface serves as the forward signal path, whereas the backward path is formed by the capacitive coupling between the ground electrodes (GEs) of transmitter (TX) and receiver (RX). So the type of communication benefits from a low forward loss, while the backward loss depending on the GE coupling strength dominates the total transmission loss. However, none of the previous works have shown a complete research on the effects of GEs. In this paper, all kinds of GE effects on CC-HBC are investigated by both finite element method (FEM) analysis and human body measurement. We set the TX GE and RX GE at different heights, separation distances, and dimensions to study the corresponding influence on the overall signal transmission path loss. In addition, we also investigate the effects of GEs with different shapes and different TX-to-RX relative angles. Based on all the investigations, an analytical model is derived to evaluate the GE related variations of channel loss in CC-HBC.
机译:利用体表作为信号传输介质,在未来的无线人体局域网(WBAN)应用中,电容耦合人体通信(CC-HBC)可以实现比常规无线通信更高的能源效率。在CC-HBC方案下,身体表面用作前向信号路径,而后向路径由发送器(TX)和接收器(RX)的接地电极(GE)之间的电容耦合形成。因此,通信类型受益于低前向损耗,而取决于GE耦合强度的后向损耗则占总传输损耗的主导。但是,以前的工作都没有显示出对GE的影响的完整研究。本文通过有限元方法(FEM)分析和人体测量研究了各种GE对CC-HBC的影响。我们将TX GE和RX GE设置为不同的高度,分隔距离和尺寸,以研究对整体信号传输路径损耗的相应影响。此外,我们还研究了具有不同形状和不同TX-RX相对角度的GE的影响。基于所有调查,推导了一个分析模型来评估CC-HBC中与GE相关的信道损耗变化。

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