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An energy efficient MAC protocol for mobile in-vivo body sensor networks

机译:用于移动体内人体传感器网络的节能MAC协议

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Body sensor networks (BSNs) is a challenging research area that have attracted many researchers in recent times. Examples of BSN applications include those that are used to detect vital signs of the human body. As these body sensor devices are typically powered by batteries that are difficult to replace, energy efficient MAC protocols play an important role in BSNs. In this paper, we propose a novel TDMA-based energy efficient MAC protocol for in-vivo communications between mobile nodes in BSNs using an uplink/downlink asymmetric network architecture. A TDMA scheduling scheme and changeable frame formats are also proposed. An adaptive power control scheme is designed especially for the mobile sensor scenarios presented. Simulation results based on the random mobility pattern show that the power consumption of the proposed MAC protocol is much lesser than that of the star topology TDMA. Furthermore, it is also shown that the latency performance can be improved by reducing the data slot duration.
机译:人体传感器网络(BSN)是一个具有挑战性的研究领域,最近吸引了许多研究人员。 BSN应用程序的示例包括那些用于检测人体生命体征的应用程序。由于这些人体传感器通常由难以更换的电池供电,因此节能型MAC协议在BSN中起着重要的作用。在本文中,我们提出了一种新颖的基于TDMA的节能MAC协议,该协议使用上行/下行非对称网络架构在BSN中的移动节点之间进行体内通信。还提出了TDMA调度方案和可变帧格式。专门针对所提出的移动传感器方案设计了一种自适应功率控制方案。基于随机迁移率模式的仿真结果表明,所提出的MAC协议的功耗比星形拓扑TDMA的功耗小得多。此外,还显示出可以通过减少数据时隙持续时间来改善等待时间性能。

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