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Self-Calibrating Body Sensor Network Based on Periodic Human Movements

机译:基于周期性人体运动的自校准人体传感器网络

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摘要

Body sensor networks with a central gateway node can control wireless transmission and optimize the network lifetime. The central node should be placed within communication reach of other nodes spread out around the human body, such as on the chest. This paper reports a novel energy-efficient time multiplexing transmission method based on the human rhythmic movement of running for on-body wireless communication. The running style of each individual allows the network to self-calibrate the communication scheme so that transmissions occur only when high link reliability is predicted. This technique takes advantage of the periodic running actions to implement a dynamic time division multiple access strategy for a five node body network with very little communication overhead, long sleep times for the sensor transceivers, and robustness to communication errors. The results showed all wireless communications were successful, except when two nodes attempt to use the transmission medium simultaneously. An aggregated network reliability of 90% was achieved compared to 63% when employing traditional time multiplexing algorithms.
机译:具有中央网关节点的人体传感器网络可以控制无线传输并优化网络寿命。中央节点应放置在人体周围其他节点(例如胸部)的通讯范围内。本文报道了一种基于人体有节奏运动的高效节能时分复用传输方法,用于人体无线通信。每个人的运行方式允许网络自校准通信方案,以便仅在预测到高链路可靠性时才进行传输。该技术利用周期性的运行动作来为五节点主体网络实现动态时分多址策略,该策略的通信开销非常小,传感器收发器的睡眠时间较长,并且对通信错误具有鲁棒性。结果表明,除了两个节点尝试同时使用传输介质时,所有无线通信均成功。与使用传统的时分复用算法时的63%相比,实现了90%的聚合网络可靠性。

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