重传情况下无线传感器网络的传感器部署优化模型

Xiaoxi Liu, Ruiying Li, N. Huang
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引用次数: 7

摘要

无线传感器网络(WSN)广泛应用于农业、生物、交通、军事等诸多领域的监控。良好的节点部署策略可以大大降低无线传感器网络的能耗,优化其生命周期。本文提出了一种基于正六边形网格的同构平面WSN节点部署模型。基于能耗模型、路由算法、重传模型和睡眠/唤醒机制,分析了每个传感器在一个数据采集周期内的数据传输和能耗。在连通性和覆盖要求约束下,提出了均匀和非均匀传感器部署方案的两种优化模型,使能耗最小化。案例研究结果表明,在考虑重传的情况下,部署WSN所需的节点和初始能量要少得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A sensor deployment optimization model of the wireless sensor networks under retransmission
Wireless sensor networks (WSN) are widely applied in the supervisory control of the agriculture, biology, transportation, military and many other fields. An excellent node deployment strategy can largely reduce the energy consumption and optimize the lifetime of WSN. In this paper, a new node deployment model based on regular hexagon grids is proposed for a homogeneous flat WSN. Both the data transmission and energy consumption of each sensor in a data gathering cycle are analyzed based on energy consumption models, a routing algorithm, a retransmission model and a sleep/wakeup mechanism. Two optimization models for uniform and non-uniform sensor deployment schemes are proposed to minimize the energy consumption under the constraints of connectivity and coverage requirements. The results of our case studies show that when retransmission is considered, there are much less nodes and initial energy needed in the deployment of the WSN.
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