Mir Hojjat Seyedi Daniel Lai Seyedi A Novel Intrabody Communication Transceiver for Biomedical Applications

A Novel Intrabody Communication Transceiver for Biomedical Applications

von Mir Hojjat Seyedi Daniel Lai

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Beschreibung

This monograph explores Intrabody communication (IBC) as a novel non-RF wireless data communication technique using the human body itself as the communication channel or transmission medium. In particular, the book investigates Intrabody Communication considering limb joint effects within the transmission frequency range 0.3-200 MHz.

Based on in-vivo experiments which determine the effects of size, situations, and locations of joints on the IBC, the book proposes a new IBC circuit model explaining elbow joint effects. This model not only takes the limb joint effects of the body into account but also considers the influence of measurement equipment in higher frequency band thus predicting signal attenuation behavior over wider frequency ranges. Finally, this work proposes transmitter and receiver architectures for intrabody communication. A carrier-free scheme based on impulse radio for the IBC is implemented on a FPGA.


This monograph explores Intrabody communication (IBC) as a novel non-RF wireless data communication technique using the human body itself as the communication channel or transmission medium. In particular, the book investigates Intrabody Communication considering limb joint effects within the transmission frequency range 0.3-200 MHz.

Based on in-vivo experiments which determine the effects of size, situations, and locations of joints on the IBC, the book proposes a new IBC circuit model explaining elbow joint effects. This model not only takes the limb joint effects of the body into account but also considers the influence of measurement equipment in higher frequency band thus predicting signal attenuation behavior over wider frequency ranges. Finally, this work proposes transmitter and receiver architectures for intrabody communication. A carrier-free scheme based on impulse radio for the IBC is implemented on a FPGA.


Explores Intrabody communication as a novel communication technique using the human body itself as the communication channel or transmission medium Focusses on Intrabody Communication considering limb joint effects Proposes a new IBC circuit model explaining elbow joint effects Presents new transmitter and receiver architectures for intrabody communication Includes supplementary material: sn.pub/extras

Autor*in

Mir Hojjat Seyedi

Themen in »A Novel Intrabody Communication Transceiver for Biomedical Applications«

IEEE 802.15.6 IR-IBC FPGA wireless body area network WBAN transmission limb joint effects carrier-free transmission impulse radio

Stimmen zu »A Novel Intrabody Communication Transceiver for Biomedical Applications«

Details

ISBN: 9789811028236
Verlag: Springer Singapore
Erscheinung: 14.11.2016

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