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Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication
Zhang, Shuang1,2,3; Pun, Sio Hang1; Mak, Peng Un1; Qin, Yu-Ping2; Liu, Yi-He3; Vai, Mang I.1
2016-01
Source PublicationTechnology and Health Care
ISSN0928-7329
Volume24Issue:6Pages:821-826
Abstract

In this study, an experiment was designed to verify the low power consumption of galvanic coupling human-body communication. A silver electrode (silver content: 99%) is placed in a pig leg and a sine wave signal with the power of 0 dBm is input. Compared with radio frequency communication and antenna transmission communication, attenuation is reduced by approximately 10 to 15 dB, so channel characteristics are highly improved.

KeywordImplantable Galvanic Coupling Human-body Communication Attenuation Measurement
DOI10.3233/THC-161229
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaHealth Care Sciences & Services ; Engineering
WOS SubjectHealth Care Sciences & Services ; Engineering, Biomedical
WOS IDWOS:000389642000004
Scopus ID2-s2.0-84999133702
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Citation statistics
Document TypeJournal article
CollectionINSTITUTE OF MICROELECTRONICS
DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING
Corresponding AuthorPun, Sio Hang
Affiliation1.University of Macau
2.Chengdu University of Technology
3.Neijiang Normal University
First Author AffilicationUniversity of Macau
Corresponding Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Zhang, Shuang,Pun, Sio Hang,Mak, Peng Un,et al. Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication[J]. Technology and Health Care, 2016, 24(6), 821-826.
APA Zhang, Shuang., Pun, Sio Hang., Mak, Peng Un., Qin, Yu-Ping., Liu, Yi-He., & Vai, Mang I. (2016). Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication. Technology and Health Care, 24(6), 821-826.
MLA Zhang, Shuang,et al."Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication".Technology and Health Care 24.6(2016):821-826.
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