Measurement of Transmission Properties of HBC Channel and Its Impulse Response Model

In human body communication (HBC), the human body is used as a medium for transmitting data between devices in order to replace wired and wireless technologies. This paper presents the measurement results on the transmission properties of an HBC channel and an impulse response model for the HBC chan...

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Published inIEEE transactions on instrumentation and measurement Vol. 65; no. 1; pp. 177 - 188
Main Authors Hwang, Jung-Hwan, Kang, Tae-Wook, Kim, Youn-Tae, Park, Seong-Ook
Format Journal Article
LanguageEnglish
Published New York IEEE 01.01.2016
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract In human body communication (HBC), the human body is used as a medium for transmitting data between devices in order to replace wired and wireless technologies. This paper presents the measurement results on the transmission properties of an HBC channel and an impulse response model for the HBC channel. The HBC channel was measured with respect to multiple subjects, and the channel parameters were then obtained to analyze the subject dependency of the HBC channel. The HBC channel was modeled using impulse responses that were obtained from the measured channels. The measurement results and the impulse response model can be effectively used to estimate the performance of HBC devices, which is significantly influenced by an HBC channel.
AbstractList In human body communication (HBC), the human body is used as a medium for transmitting data between devices in order to replace wired and wireless technologies. This paper presents the measurement results on the transmission properties of an HBC channel and an impulse response model for the HBC channel. The HBC channel was measured with respect to multiple subjects, and the channel parameters were then obtained to analyze the subject dependency of the HBC channel. The HBC channel was modeled using impulse responses that were obtained from the measured channels. The measurement results and the impulse response model can be effectively used to estimate the performance of HBC devices, which is significantly influenced by an HBC channel.
Author Tae-Wook Kang
Youn-Tae Kim
Jung-Hwan Hwang
Seong-Ook Park
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SubjectTerms Attenuation measurement
channel models
Channels
Devices
Electrodes
electromagnetic modeling
frequency-selective fading channels
Human body
Impulse response
Instrumentation
Loss measurement
Optical receivers
Optical transmitters
Propagation losses
Synchronization
Transaction processing
Transmission
Wireless communication
Title Measurement of Transmission Properties of HBC Channel and Its Impulse Response Model
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