Integrated Placement and Routing of Relay Nodes for Fault-Tolerant Hierarchical Sensor Networks

A. Bari, Yufei Xu, A. Jaekel
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引用次数: 11

Abstract

Two-tiered sensor networks have gained popularity in recent years, due to their ability to facilitate load-balanced data gathering, fault-tolerance as well as increased network connectivity and coverage. Using higher-powered relay nodes as cluster heads can lead to further improvements in network performance. It is important to determine an appropriate placement scheme for such relay nodes, in order to achieve specified coverage and connectivity requirements with as few relay nodes as possible. A significant amount of work has been done in this area in recent years. However, existing placement strategies typically do not consider energy dissipation due to routing and are not capable of optimizing the routing scheme and placement concurrently. In this paper, we propose an integrated integer linear program (ILP) formulation that determines the minimum number of relay nodes, along with their locations and a suitable communication strategy such that i) all sensor nodes are able to connect to at least ks relay nodes, ii) the upper tier relay node network is at least Kr-connected and iii) the network has a guaranteed lifetime. We also present an intersection based scheme for creating the initial set of potential relay node positions, which are used by our ILP, and evaluate its performance under different conditions. Experimental results on networks with hundreds of sensor nodes show that our approach leads to significant improvements over existing energy-unaware placement schemes.
容错分层传感器网络中继节点集成布局与路由
近年来,双层传感器网络越来越受欢迎,因为它们能够促进负载均衡的数据收集,容错以及增加的网络连接和覆盖范围。使用功率更高的中继节点作为簇头可以进一步提高网络性能。为这样的中继节点确定一个适当的放置方案是很重要的,以便用尽可能少的中继节点实现指定的覆盖和连接要求。近年来,在这方面做了大量的工作。然而,现有的布局策略通常不考虑路由引起的能量消耗,不能同时优化路由方案和布局。在本文中,我们提出了一个集成的整数线性规划(ILP)公式,该公式确定了中继节点的最小数量,以及它们的位置和合适的通信策略,以便i)所有传感器节点能够连接到至少k个中继节点,ii)上层中继节点网络至少有k个连接,iii)网络具有保证的生命周期。我们还提出了一种基于交集的方案,用于创建ILP使用的初始电位中继节点位置集,并评估了其在不同条件下的性能。在具有数百个传感器节点的网络上的实验结果表明,我们的方法比现有的能量不感知放置方案有显着改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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