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Characterization and Classification of Human Body Channel as a function of Excitation and Termination Modalities

机译:人体通道的表征和分类与激励和终止方式的关系

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Human Body Communication (HBC) has recently emerged as an alternative to radio frequency transmission for connecting devices on and in the human body with order(s) of magnitude lower energy. The communication between these devices can give rise to different scenarios, which can be classified as wearable-wearable, wearable-machine, machine-machine interactions. In this paper, for the first time, the human body channel characteristics is measured for a wide range of such possible scenarios (14 vs. a few in previous literature) and classified according to the form-factor of the transmitter and receiver. The effect of excitation/termination configurations on the channel loss is also explored, which helps explain the previously unexplained wide variation in HBC Channel measurements. Measurement results show that wearable-wearable interaction has the maximum loss (upto -50 dB) followed by wearable-machine and machine-machine interaction (min loss of 0.5 dB), primarily due to the small ground size of the wearable devices. Among the excitation configurations, differential excitation is suitable for small channel length whereas single ended is better for longer channel.
机译:人体通信(HBC)最近已成为射频传输的替代方法,用于以较低数量级的较低能量连接人体上和体内的设备。这些设备之间的通信会引起不同的情况,这些情况可分为可穿戴-可穿戴,可穿戴机器,机器-机器交互。在本文中,这是首次在各种可能的情况下(14与以前的文献中的几种相比)对人体通道特性进行了测量,并根据发送器和接收器的形状因数对其进行了分类。还探讨了激励/终止配置对信道损耗的影响,这有助于解释HBC信道测量中先前无法解释的宽泛变化。测量结果表明,可穿戴设备与可穿戴设备之间的相互作用具有最大损耗(最高-50 dB),其次是可穿戴设备与机器之间的相互作用(最小损耗为0.5 dB),这主要是由于可穿戴设备的地面尺寸较小。在激励配置中,差分激励适用于较小的通道长度,而单端适用于较长的通道。

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