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Auteur principal: Wireilla Scientific Publications (Australia)
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Publié: Zenodo 2026
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Accès en ligne:https://doi.org/10.5281/zenodo.19591085
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author Wireilla Scientific Publications (Australia)
author_facet Wireilla Scientific Publications (Australia)
contents <p>Intra-body communication (IBC) is a type of Body Area Network (BAN)that utilizes human body as the<br>medium for data transmission. Thelow power requirements of intra-body communication (IBC) as<br>compared to near field electromagnetic waves showed that it can be a suitable solution for Medical Body<br>AreaNetworks (MBANs) in a mobile health care system.In this paper, we investigate the transmission<br>characteristicsof the human body as a conductor of signals byconsidering different datatransmission<br>rates of multi-point to point network in order to reduce overall power consumption of the<br>BAN.Furthermore, we utilize IBC and propose a new scheme to combines Slotted ALOHA, TDMA, and<br>Reservation ALOHA together to increase the throughput and decrease the delay. By using our new hybrid<br>scheme with the movable boundary designed for health status monitoring, we are able to increase the<br>efficiency of data transmission by prioritizing the more critical data from the sensors. </p>
format Recurso digital
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publishDate 2026
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record_format zenodo
spellingShingle Intra-Body Hybrid Communication Scheme for Healthcare Systems
Wireilla Scientific Publications (Australia)
Body area network
Intra-body communications
Hybrid communication scheme
<p>Intra-body communication (IBC) is a type of Body Area Network (BAN)that utilizes human body as the<br>medium for data transmission. Thelow power requirements of intra-body communication (IBC) as<br>compared to near field electromagnetic waves showed that it can be a suitable solution for Medical Body<br>AreaNetworks (MBANs) in a mobile health care system.In this paper, we investigate the transmission<br>characteristicsof the human body as a conductor of signals byconsidering different datatransmission<br>rates of multi-point to point network in order to reduce overall power consumption of the<br>BAN.Furthermore, we utilize IBC and propose a new scheme to combines Slotted ALOHA, TDMA, and<br>Reservation ALOHA together to increase the throughput and decrease the delay. By using our new hybrid<br>scheme with the movable boundary designed for health status monitoring, we are able to increase the<br>efficiency of data transmission by prioritizing the more critical data from the sensors. </p>
title Intra-Body Hybrid Communication Scheme for Healthcare Systems
topic Body area network
Intra-body communications
Hybrid communication scheme
url https://doi.org/10.5281/zenodo.19591085