论文标题

用于物理固定的电质量内体内的渠道建模,以与电流TX和多模式RX的体外通信

Channel Modeling for Physically Secure Electro-Quasistatic In-Body to Out-of-Body Communication with Galvanic Tx and Multimodal Rx

论文作者

Datta, Arunashish, Nath, Mayukh, Chatterjee, Baibhab, Modak, Nirmoy, Sen, Shreyas

论文摘要

人体内外使用的设备数量的越来越多,导致人体作为一种交流媒介的探索。在本文中,我们设计了一个通道模型,用于使用物理上安全的质量质量人体交流在体外进行通信的植入式设备。当放置在发射器附近时,电载体接收器的路径损耗比电容接收器较低,而电容式接收器的路径损失约为15dB较低的路径损失,用于发射器和接收器之间的较大分离。有限元方法(FEM)模拟用于分析不同接收器拓扑的通信通道,并使用实验数据来验证模拟结果。

Increasing number of devices being used in and around the human body has resulted in the exploration of the human body as a communication medium. In this paper, we design a channel model for implantable devices communicating outside the body using physically secure Electro-Quasistatic Human Body Communication. A galvanic receiver shows 5dB lower path loss than capacitive receiver when placed close to transmitter whereas a capacitive receiver has around 15dB lower path loss for larger separation between the transmitter and receiver. Finite Element Method (FEM) based simulations are used to analyze the communication channel for different receiver topologies and experimental data is used to validate the simulation results.

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