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Experimental Verifications of Low Frequency Path Gain (PG) Channel Modeling for Implantable Medical Device (IMD) Journal article
IEEE Access, 2019,Volume: 7,Page: 11934-11945
Authors:  Zhang S.;  Pun S.-H.;  Mak P.U.;  Qin Y.P.;  Liu Y.H.;  Gao Y.M.;  Vai M.I.
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galvanic coupling intra-body communication  Implantable communication  implantable medical device (IMD)  Poisson's equation  volume conductor theory  
Direct Measurement of Elbow Joint Angle Using Galvanic Couple System Journal article
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2017,Volume: 66,Issue: 4,Page: 757-766
Authors:  Chen, Xi Mei;  Barma, Shovan;  Pun, Sio Hang;  Vai, Mang I.;  Mak, Peng Un
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Forearm Movement  Galvanic Coupling System (Gcs)  Measurement Of Elbow Joint Angle (Eja)  Upper Arm Muscle  
Initial investigation of channel capacity for galvanic coupling human body communication Conference paper
BMEiCON 2016 - 9th Biomedical Engineering International Conference, Luang Prabang, LAOS, DEC 07-09, 2016
Authors:  Chen X.M.;  Mak P.U.;  Pun S.H.;  Lam C.-T.;  Che U.K.;  Li J.W.;  Gao Y.M.;  Vai M.I.;  Du M.
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Channel Capacity  Galvanic Coupling Hbc  Shannon's Theorem  Water-filling Algorithm  
The effects of muscle stress on signal transmission in the intra-body communication Conference paper
2016 IEEE International Conference on Consumer Electronics-China, ICCE-China 2016
Authors:  Lin S.;  Zhang H.-F.;  Gao Y.-M.;  Du M.;  Vai M.-I.
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channel characteristics  galvanic coupling intra-body communication  muscle stress  
Effects of human limb gestures on galvanic coupling intra-body communication for advanced healthcare system Journal article
BioMedical Engineering Online, 2016,Volume: 15,Issue: 1
Authors:  Chen X.M.;  Pun S.H.;  Zhao J.F.;  Mak P.U.;  Liang B.D.;  Vai M.I.
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Bit Error Rate  Galvanic Coupling Intra-body Communication  Human Limb Gestures  Joint Angle  Muscle Fatigue  
A novel field-circuit FEM modeling and channel gain estimation for galvanic coupling real IBC measurements Journal article
Sensors (Switzerland), 2016,Volume: 16,Issue: 4
Authors:  Gao Y.-M.;  Wu Z.-M.;  Pun S.-H.;  Mak P.-U.;  Vai M.-I.;  Du M.
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Channel Estimation  Channel Modeling  Field-circuit Coupling  Galvanic Coupling Intra-body Communication  
Measurement and analysis of channel attenuation characteristics for an implantable galvanic coupling human-body communication Journal article
Technology and Health Care, 2016,Volume: 24,Issue: 6,Page: 821-826
Authors:  Zhang S.;  Pun S.H.;  Mak P.U.;  Qin Y.-P.;  Liu Y.-H.;  Vai M.I.
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Attenuation  Galvanic coupling human-body communication  Implantable  Measurement  
Communication channel modeling of human forearm with muscle fiber tissue characteristics Journal article
Technology and Health Care, 2016,Volume: 24,Issue: 5,Page: 681-687
Authors:  Zhang S.;  Pun S.H.;  Mak P.U.;  Qin Y.-P.;  Liu Y.-H.;  Vai M.I.
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Analytical model  fiber characteristics  galvanic coupling  Human-Body Communication  
Galvanic coupling intra-body energy communication channel model of human tissue's characteristics Journal article
Energy Education Science and Technology Part A: Energy Science and Research, 2013,Volume: 31,Issue: 1,Page: 253-256
Authors:  Zhang S.;  Qin Y.P.;  Mak P.U.;  Pun S.H.;  Vai M.I.
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Channel model  Galvanic coupling type  Intra-body energy communication  Tissue'S characteristics  
Galvanic coupling intra-body communication channel model based on anisotropic muscular tissue Sprze{ogonek}żenie galwaniczne w modelu kanałowym mie{ogonek}śni człowieka Journal article
Przeglad Elektrotechniczny, 2013,Volume: 89,Issue: 7,Page: 74-76
Authors:  Zhang S.;  Qin Y.P.;  Mak P.U.;  Pun S.H.;  Vai M.I.
Favorite  |  View/Download:1/0  |  Submit date:2019/02/14
Channel model  Galvanic coupling type  Intra-body communication  Tissue's characteristics