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Comprehensive measurements on body channel characteristics of Human Body Communication

机译:人体通讯中人体通道特征的综合测量

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Human Body Communication (HBC) is regarded as a novel transmission technology for Artificial Intelligent (AI) society. It is important to measure and analysis body channel characteristics and the results are significant for Integrated Circuit (IC) design of HBC. This paper proposed an improving electrode configuration which was used to couple signals to human body with capacitive coupling type. The body channel characteristics in frequency domain, in time domain, and with different digital modulation were taken into sight systemically by Vector Network Analyzer (VNA), Vector Signal Generator (VSG), Digital Signal Analyzer (DSA), Arbitrary Function Generator (AFG) and Oscilloscope. The bandpass filtering characteristic of body channel was measured, and the center frequency is about 30MHz. The capacitive characteristic of body channel was also measured, and the capacitive characteristic disappears gradually with frequency increasing. Besides, the spectrum profiles of body channel characteristics with Frequency Shift Keying (FSK) and On-Off Keying (OOK) modulation after 20cm HBC were measured. Error Vector Multitude (EVM) was measured with different bits Quadrature Amplitude Modulation (QAM) after 20cm HBC.
机译:人体通信(HBC)被视为人工智能(AI)社会的一种新型传输技术。测量和分析人体通道特性非常重要,其结果对于HBC的集成电路(IC)设计具有重要意义。本文提出了一种改进的电极构造,该电极构造用于以电容耦合方式将信号耦合到人体。矢量网络分析仪(VNA),矢量信号发生器(VSG),数字信号分析仪(DSA),任意函数发生器(AFG)系统地观察了频域,时域以及具有不同数字调制的人体通道特性和示波器。测量了人体通道的带通滤波特性,中心频率约为30MHz。还测量了人体通道的电容特性,并且随着频率的增加,电容特性逐渐消失。此外,还测量了在20cm HBC后采用频移键控(FSK)和开-关键控(OOK)调制的人体通道特性的频谱分布。在20cm HBC之后,使用不同的位正交幅度调制(QAM)位来测量误差向量的质量(EVM)。

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