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A Framework for Evaluating the Best Achievable Performance by Distributed Lifetime-Efficient Routing Schemes in Wireless Sensor Networks

机译:通过分布式终身有效路由方案评估无线传感器网络中最佳可实现性能的框架

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摘要

This paper is concerned with energy-efficient routing in wireless sensor networks. Most of the existing routing schemes assign energy-related costs to network links and obtain the shortest paths for the nodes to balance the flowing traffic within the network and increase its lifetime. However, the optimal link cost values and the maximum achievable lifetime are not known for the majority of the existing schemes. A framework is provided in this work to analytically derive the best achievable performance that can be obtained by any distributed routing algorithm based on the shortest-path approach. Given a network configuration and an energy consumption model, the presented framework provides the optimal link cost assignment which yields the maximum lifetime in a distributed shortest-path routing strategy. The results are extended to the case of variable link cost assignment as well. A heuristic algorithm is also developed to obtain approximate solutions to the best performance problem with limited computational complexity. In particular, the proposed framework provides the optimal route selection as a benchmark to evaluate the energy efficiency of existing routing algorithms.
机译:本文涉及无线传感器网络中的节能路由。大多数现有的路由方案将与能源相关的成本分配给网络链路,并为节点获取最短路径,以平衡网络中的流量并延长其寿命。然而,对于大多数现有方案来说,最佳链路成本值和最大可达到寿命是未知的。在这项工作中提供了一个框架,以分析得出可通过基于最短路径方法的任何分布式路由算法获得的最佳可实现性能。在给定网络配置和能耗模型的情况下,提出的框架可提供最佳的链路成本分配,从而在分布式最短路径路由策略中产生最长的使用寿命。结果也扩展到可变链接成本分配的情况。还开发了一种启发式算法,以用有限的计算复杂度获得最佳性能问题的近似解。特别是,提出的框架提供了最佳的路线选择作为基准,以评估现有路线算法的能效。

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