Modeling optimum ETSP protocol for WSN

M. Shahzad
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Abstract

A fundamental design issue for wireless sensor network (WSN) protocols, applications and services is to introduce energy-efficiency to extend network lifetime. In this paper, we mathematically model and optimize our proposed energy-efficient time synchronization protocol (ETSP [21]) that provides significant energy improvements over compared time-synchronization protocols, namely reference broadcast synchronization (RBS [15]) and time-sync protocol for sensor networks (TPSN [16]). ETSP switches between RBS and TPSN based on the network density and improve over RBS and TPSN respectively. In the proposed protocol, we identify the conditions to switch between RBS and TPSN based on a threshold value of the number of neighbors at given node. We experimentally and mathematically derive an optimal value of the switching threshold for sensor motes hardware. It is shown that our proposed protocol results in reduced number of transmissions (message exchange) and is therefore, energy-efficient as compared to its existing counterparts. Moreover, we assess the performance of our protocol on the bit error traces collected over a WSN testbed to verify the analytical results.
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WSN最优ETSP协议建模
无线传感器网络(WSN)协议、应用和服务的一个基本设计问题是引入能效以延长网络寿命。在本文中,我们对我们提出的节能时间同步协议(ETSP[21])进行了数学建模和优化,该协议比时间同步协议(即参考广播同步(RBS[15])和传感器网络时间同步协议(TPSN[16]))提供了显著的能源改进。ETSP根据网络密度在RBS和TPSN之间切换,并分别在RBS和TPSN的基础上进行改进。在提出的协议中,我们根据给定节点上邻居数量的阈值确定在RBS和TPSN之间切换的条件。我们通过实验和数学推导出传感器硬件开关阈值的最优值。结果表明,我们提出的协议减少了传输(消息交换)的数量,因此,与现有的协议相比,节能。此外,我们评估了我们的协议在WSN测试台上收集的误码跟踪上的性能,以验证分析结果。
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