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Theoretical Analysis of AM and FM Interference Robustness of Integrating DDR Receiver for Human Body Communication

机译:集成DDR接收机进行人体通信的AM和FM干扰鲁棒性的理论分析。

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Prolific growth of miniaturized devices has led to widespread use of wearable devices and physiological sensors. The state-of-art technique for connecting these devices and sensors is through wireless radio waves. However, wireless body area wireless body area network (WBAN) suffers from limited security (wireless signals from energy-constrained sensors can be snooped by nearby attackers), poor energy-efficiency (up conversion and down conversion), and self-interference. Human body communication (HBC), which uses human body as a conducting medium, has emerged as a new alternative physical layer for WBAN, as it can enable communication with better energy efficiency and enhanced security. Broadband (BB) HBC uses the human body channel as a broadband communication medium and can enable higher energy efficiency compared to narrowband HBC. However, due to the antenna effect of human body, ambient interferences get picked up from the environment, proving to be one of the primary bottlenecks for BB-HBC systems. In this paper, we analyze the performance of an integrating dual data rate (I-DDR) receiver, which enables interference robust BB-HBC, under continuous wave (CW), amplitude modulated (AM), and frequency modulated (FM) interferences. Theoretical derivations along with simulations provide key insights into the behavior of I-DDR receiver under different interference scenarios, highlighting the efficacy (>22 dB improvement in SIR tolerance for both FM and AM) of the technique. Finally, measurements are carried out by applying the I-DDR principle on signals transmitted through the human body and captured on an oscilloscope. Measurements from an I-DDR receiver fabricated in TSMC 65 nm technology shows <10(-4) BER in presence of CW, AM, and FM interference with -21 dB SIR further demonstrating the efficacy of the I-DDR method in interference rejection.
机译:小型设备的大量增长导致可穿戴设备和生理传感器的广泛使用。连接这些设备和传感器的最新技术是通过无线电波。但是,无线体域无线体域网(WBAN)的安全性受到限制(能量受限的传感器的无线信号可能会被附近的攻击者监听),能效低下(上转换和下转换)以及自干扰。使用人体作为导电介质的人体通讯(HBC)已成为WBAN的新的替代物理层,因为它可以实现更好的能源效率和增强的安全性。宽带(BB)HBC使用人体通道作为宽带通信介质,与窄带HBC相比,可以实现更高的能源效率。但是,由于人体的天线效应,外界干扰会从环境中吸收,被证明是BB-HBC系统的主要瓶颈之一。在本文中,我们分析了集成双数据速率(I-DDR)接收器的性能,该接收器在连续波(CW),调幅(AM)和调频(FM)干扰下能够实现强大的BB-HBC干扰。理论推导和仿真结果为深入了解I-DDR接收机在不同干扰情况下的行为提供了重要见识,突出了该技术的有效性(FM和AM的SIR容限提高了22 dB以上)。最后,通过对通过人体传输并在示波器上捕获的信号应用I-DDR原理进行测量。使用TSMC 65 nm技术制造的I-DDR接收器的测量结果显示,在CW,AM和FM干扰以及-21 dB SIR的情况下,BER小于10(-4),这进一步证明了I-DDR方法在抑制干扰方面的功效。

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