一种面向自组织传感器网络的概率节能路由(PEER)方案

IF 7.5
Kai Chen, Yang Qin, Fan Jiang, Zongyao Tang
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引用次数: 11

摘要

无线自组织传感器网络由具有传感、计算和通信功能的小节点组成。能量不足是这类网络的一个关键问题。许多路由、电源管理和数据传播协议都是专门为它们设计的,其中能源意识是一个主要的设计问题。提出了一种新的基于概率代理的节能路由策略(PEER)。与之前关注能量感知路由的工作不同,PEER在选择下一跳时统计地(基于路径的)考虑了整个路径的总成本和单个剩余能量,即每个中间节点根据从该节点到sink的统计路径信息选择下一跳节点。通过分析和仿真,我们证明PEER可以延长网络的生存能力,缩短平均数据包延迟,从而优于所有现有的路由方案。此外,我们推测PEER中的rho系数可以智能地调整以适应易变网络的情况,从而对其进行进一步的研究,并取得预期的结果
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Probabilistic Energy-Efficient Routing (PEER) Scheme for Ad-hoc Sensor Networks
Wireless ad-hoc sensor networks consist of small nodes with sensing, computing, and communicating capabilities. Energy deficiency is a key problem of these kinds of networks. Many routing, power management, and data dissemination protocols have been specifically designed for them where energy awareness is a chief design issue. This paper proposes a new probabilistic agent-based energy efficient routing strategy (PEER). In contrast to the earlier work that focus on energy-aware routing, PEER takes into account both total cost and individual residual energy of the whole path statistically (path-based) when selecting the next hop, i.e. each intermediate node chooses its next hop node based on the statistical path information from that node to the sink. We show through analysis and simulations that PEER can prolong the network survivability, shorten the average packet delay, and hence outperform all the existing routing schemes. Moreover, we conjecture that the coefficient rho in PEER may be intelligently adjusted to fit the situation of the volatile networks, thus we make further investigation into it and achieve the intending results
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