Abstract
The applications of wireless sensing technology in health monitoring and diagnosis have increased dramatically. These applications have improved the quality of life and allowed medical practitioners to access patients information remotely and timely. However, the wireless communication between the sensing devices can be interfered by body movement. To guarantee data availability and recognition accuracy, each node has to either utilize a high transmission power or in-volve a packet retransmission mechanism. Increasing the transmission power of a sensor node increases energy over-heads and communication range. Larger communication range can produce additional interference with other nodes on the body. Packet retransmission, on the other hand, complicates on-body sensor nodes' MAC layer and increases energy overheads. In this paper, we propose an Adaptive Medium Access Control protocol (AMAC) to improve the delivery rate by duty-cycling the transmission radio accord-ing to the predicted activities. We perform extensive experi-ments to evaluate and compare the protocol against B-MAC, OMAC and OTP using real sensor nodes attached to 50 par-ticipants. The results show that the proposed algorithm can achieve a higher packet delivery than B-MAC, OMAC and OTP without additional energy consumption.
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CITATION STYLE
Lim, T. H., & Abdullah, A. H. (2015). Real-Time adaptive medium access control protocol to improve transmission efficiency in body sensor networks. In MOBIHEALTH 2015 - 5th EAI International Conference on Wireless Mobile Communication and Healthcare - Transforming Healthcare through Innovations in Mobile and Wireless Technologies. ICST. https://doi.org/10.4108/eai.14-10-2015.2261777
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