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Experimental assessment of human-body-like tissue as a communication channel for galvanic coupling

机译:人体样组织作为电流耦合的交流通道的实验评估

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The recent surge of implantable and wearable medical devices have paved the way for realizing intra-body networks (IBNs). Traditional RF-based techniques fall short in wirelessly connecting such devices owing to absorption within body tissues. A different approach is known as galvanic coupling, which employs weak electrical current within naturally conducting tissues to enable intra-body communication. This work is focused on channel characterization of the human body tissues considering the propagation of such electrical signals through it that carry data. Experiments were conducted using porcine tissue (in lieu of actual human tissue) with skin, fat and muscle layers in the frequency range of 100 kHz to 1 MHz. By utilizing single-carrier BPSK modulated Pseudorandom Noise Sequences, a correlative channel sounding system was implemented, leading to the following contributions: (1) measurements of the channel impulse and frequency response, (2) a noise analysis and capacity estimation, and (3) the comparison of results with existing models.
机译:最近植入式和可穿戴式医疗设备的激增为实现体内网络(IBN)铺平了道路。由于人体组织内的吸收,传统的基于RF的技术无法无线连接此类设备。一种不同的方法称为电流耦合,该方法在自然导电的组织内采用弱电流以实现体内通信。这项工作着眼于人体组织的通道特性,考虑到携带数据的此类电信号在人体组织中的传播。使用猪组织(代替实际的人类组织)进行实验,该组织的皮肤,脂肪和肌肉层的频率范围为100 kHz至1 MHz。通过利用单载波BPSK调制的伪随机噪声序列,实现了相关的信道探测系统,从而产生了以下贡献:(1)信道脉冲和频率响应的测量;(2)噪声分析和容量估计;以及(3) )将结果与现有模型进行比较。

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