Measurement and Evaluation of Electric Signal Transmission through Human Body by Channel Modeling, System Design, and Implementation

  • Kang, T.; 
  • Hwang, J.; 
  • Kim, H.; 
  • Kim, S.; 
  • Oh, K.; 
  • ... Lee, W.; 
  • 외 4명
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초록

Human body communications (HBC), employing the human body as a signal transmission medium, can provide efficient and intuitive methods to form a network in the body. This paper presents a comprehensive study for a highly reliable HBC system including body channel modeling, transceiver design, and performance evaluation through implementation, in considera-tion of practical sensor network environments for wearable and implantable devices applicable to healthcare and bio-signal acquisition. Body channel characteristics based on capacitive coupling, such as root mean square delay spread and mean path gain, were explored by measuring the body impulse responses under 12 experimental conditions, determined by the variation in body postures and device locations between the wrist and positions assumed under the scalp through a customized experimental setup with micropig-derived bio membranes used for wrapping the devices to emulate an implantable environment. The proposed transceiver design for digital transmission, including a preamble structure and signal modulation method supporting a maximum data rate of 1 Mbps, was verified through the performance evaluations conducted for examining the frame detection probability and bit-error-rate (BER) in the body channel model at multiple operating frequencies of 32, 42, and 64 MHz. The proposed system reliability was demonstrated by the achievement of a BER below 4.7 × 10-8 through battery-powered implemented devices with dimensions of 30 × 30 mm2, comprising a digital signal processing module for signal generation and detection processes, and an analog front-end module for recovering the received signal from signal deterioration by severe path loss and time-dispersive effect in the body channel. IEEE

키워드

Biological system modeling; body channel model; Channel models; Couplings; Germanium; Human body communications; implantable device; Implants; Medical services; sensor networks; Wearable computers; wearable device; wireless body area networks; Bit error rate; Deterioration; Digital signal processing; Implants (surgical); Sensor networks; Transceivers; Capacitive couplings; Digital transmission; Electric signal transmission; Experimental conditions; Human body communications; Root mean square delay spreads; Sensor network environment; Signal deterioration; Digital devices
제목
Measurement and Evaluation of Electric Signal Transmission through Human Body by Channel Modeling, System Design, and Implementation
저자
Kang, T.; Hwang, J.; Kim, H.; Kim, S.; Oh, K.; Lee, J.; Park, H.; Kim, S.; Oh, W.; Lee, W.
DOI
10.1109/TIM.2021.3082273
발행일
2021-05
유형
Article
저널명
IEEE Transactions on Instrumentation and Measurement
권
70