Enhanced lightweight medium access protocol with adaptive multi-timeslot allocation for wireless sensor network

R. Rashid, W. M. A. E. W. Embong, N. Fisal
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引用次数: 3

Abstract

We propose an enhanced lightweight medium access control (eL-MAC) protocol which combines scheduled based MAC mechanism and adaptive multi-timeslot allocation (AMTA). Wireless sensor network (WSN) consists of tiny wireless devices typically cooperate with each other to aggregate sensor data to the base station. It is increasingly being used in a wide range of environmental application. Such applications like habitat monitoring, large-scale industrial monitoring and urban population monitoring require years of operation period with low rate data transmission. Hence, providing a reliable data transmission and efficiency in energy usage are critical in order to prolong the network lifetime. eL-MAC solves the problems that normally happen in WSN such as idle listening, over hearing and hidden terminal problem, by introducing a slotting communication mechanism where node only transmits in its own timeslot and sleep in other time slot if there is no activity. Furthermore, eL-MAC allows multiple timeslots to be occupied by a node according to the traffic requirement. The simulation result shows our protocol prolongs the network lifetime compared to LMAC mechanism, without reducing the channel utilization.
无线传感器网络自适应多时隙分配的增强型轻量级介质接入协议
提出了一种将基于调度的MAC机制和自适应多时隙分配(AMTA)相结合的增强型轻量级介质访问控制(eL-MAC)协议。无线传感器网络(WSN)由微小的无线设备组成,通常相互协作,将传感器数据聚合到基站。它越来越广泛地应用于环境应用中。栖息地监测、大规模工业监测、城市人口监测等应用需要数年的运行周期和低速率的数据传输。因此,提供可靠的数据传输和能源使用效率对于延长网络生命周期至关重要。eL-MAC通过引入节点只在自己的时隙传输,在其他时隙无活动时休眠的时隙通信机制,解决了WSN中通常存在的空闲监听、过听、终端隐藏等问题。此外,eL-MAC允许一个节点根据流量需求占用多个时间段。仿真结果表明,与LMAC机制相比,该协议在不降低信道利用率的前提下延长了网络生存期。
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