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An Energy Efficient MAC Protocol for Multi-Hop Swallowable Body Sensor Networks

机译:多跳可吞咽人体传感器网络的节能MAC协议

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摘要

Swallowable body sensor networks (BSNs) are composed of sensors which are swallowed by patients and send the collected data to the outside coordinator. These sensors are energy constraint and the batteries are difficult to be replaced. The medium access control (MAC) protocol plays an important role in energy management. This paper investigates an energy efficient MAC protocol design for swallowable BSNs. Multi-hop communication is analyzed and proved more energy efficient than single-hop communication within the human body when the circuitry power is low. Based on this result, a centrally controlled time slotting schedule is proposed. The major workload is shifted from the sensors to the coordinator. The coordinator collects the path-loss map and calculates the schedules, including routing, slot assignment and transmission power. Sensor nodes follow the schedules to send data in a multi-hop way. The proposed protocol is compared with the IEEE 802.15.6 protocol in terms of energy consumption. The results show that it is more energy efficient than IEEE 802.15.6 for swallowable BSN scenarios.
机译:可吞咽人体传感器网络(BSN)由患者吞咽的传感器组成,并将收集的数据发送到外部协调员。这些传感器受能量限制,电池难以更换。媒体访问控制(MAC)协议在能源管理中起着重要作用。本文研究了可吞咽BSN的节能MAC协议设计。分析了多跳通信,并证明了当电路功率较低时,在人体中单跳通信比单跳通信更具能源效率。基于该结果,提出了集中控制的时隙调度。主要工作量从传感器转移到协调器。协调器收集路径损耗图并计算时间表,包括路由,时隙分配和传输功率。传感器节点按照时间表以多跳方式发送数据。就能耗而言,将所建议的协议与IEEE 802.15.6协议进行了比较。结果表明,对于可吞咽的BSN场景,它比IEEE 802.15.6更具能源效率。

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