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BodyWire: A 6.3-pJ/b 30-Mb/s −30-dB SIR-Tolerant Broadband Interference-Robust Human Body Communication Transceiver Using Time Domain Interference Rejection Shovan Maity , Student Member , IEEE, Baibhab Chatterjee , Student Member , IEEE
BodyWire提出了一种宽带干扰鲁棒的人体通信技术,通过电容终端和电压模式通信实现高效能数据传输。
6.3-pJ/bit, 30 Mb/s, -30-dB SIR tolerance
人体通信宽带通信干扰抑制能量效率电容终端
▸使用电容终端和电压模式通信技术实现宽带人体通信
▸采用集成双数据率接收器和时域干扰抑制技术
▸无需调制解调,利用人体全带宽进行数据传输
Abstract
Human body communication (HBC) utilizes the human body as the communication medium between devices in and around the body, providing an energy-efficient, secure alternative to radio wave communication traditionally used in body area networks (BAN). However, the human antenna effect results in the human body picking up environmental interference affectin g HBC transmissions. Most state-of-the-art HBC transceivers utilize narrowband modulation techniques to communicate using frequencies, which are not affected by interference. In this article, we use capacitive termination and voltage mode communication techniques to utilize the human body as a broadband (BB) communication channel enabling as a BB HBC. An integrating dual data rate (I-DDR) receiver utilizing time-domain interference rejection (TD-IR) through integration and periodic sampling is used for interference-robust BB HBC operation. The proposed receiver can achieve higher energy efficiency as it utilizes the full bandwidth of the body for data transmission and does not require any modulation/ demodulation. The BB HBC transceiver is fabricated in the TSMC 65-nm technology. Measurement results show 6.3-pJ/bit energy efficiency at a data rate of 30 Mb/s with −30-dB signal-to-interference ratio (SIR) tolerance, making it 18 × energy efficient compared with state-of-the-art HBC transceivers.