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Equivalent Circuit Model Viewed From Receiver Side in Human Body Communication

机译:从人体通信的接收方看等效电路模型

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Human body communication (HBC) is a signal transmission method that uses the human body as a part of the transmission path. The incoming signal through the receiver electrode can be modeled as a signal from a signal source, which consists of the equivalent signal source voltage and output impedance. These values are important parameters for analyzing the transmission characteristics of HBC as well as for designing the front-end circuit of the receiver. In this paper, an equivalent circuit model of signal transmission from a transmitter on the human body to an off-body receiver touched by a finger was constructed. The ground electrode of the transmitter was in contact with the human body. This is a different configuration compared to capacitive HBC configurations that leave the ground electrode floating. The relationship between the received signal voltage and the distance between the transmitter's electrodes, the size of the receiver ground, and the transmitter-receiver distance were evaluated. Results were analyzed by using the equivalent circuit model. The transmitter-receiver distance and the distance between the transmitter's electrodes were both independently related to the equivalent signal source voltage. The receiver ground size which was related to the capacitive coupling between the receiver ground and the human body was related to the equivalent output impedance.
机译:人体通信(HBC)是一种使用人体作为传输路径一部分的信号传输方法。可以将通过接收器电极的输入信号建模为来自信号源的信号,该信号源由等效信号源电压和输出阻抗组成。这些值是分析HBC传输特性以及设计接收器前端电路的重要参数。在本文中,构建了从人体上的发射机到手指触摸的体外接收机的信号传输的等效电路模型。发射器的接地电极与人体接触。与使接地电极悬空的电容性HBC配置相比,这是一种不同的配置。评估了接收信号电压与发射器电极之间的距离,接收器地线的大小以及发射器与接收器之间的距离之间的关系。使用等效电路模型分析结果。发射器-接收器的距离以及发射器电极之间的距离都与等效信号源电压独立相关。与接收器接地和人体之间的电容耦合有关的接收器接地尺寸与等效输出阻抗有关。

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