Distributed maintenance of minimum-cost path information in wireless sensor networks

M. Steine, M. Geilen, T. Basten
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引用次数: 3

Abstract

The quality of the communication links in a Wireless Sensor Network often shows significant asymmetry and variation over time, due to, for example, heterogeneous settings of the transmission power, moving nodes or changing external interference. This makes it difficult for nodes to accurately maintain system-level properties, such as the minimum-energy path from the node to a given reference node, as required by many protocols. In this paper, we introduce a distributed service that allows nodes to maintain accurate information related to the minimum-cost path, such as its cost or parent on that path. Using controlled n-hop forwarding, to deal with asymmetric links, every node disseminates minimum-cost path and connectivity information allowing every connected node in the network to iteratively derive minimum-cost path information. This controlled n-hop forwarding is repeated to avoid stale information due to dynamic changes in link qualities. The parameters of the service allow a trade-off between the accuracy and overhead. We study the characteristics of a deployment that impact this trade-off and how the service should be parameterized accordingly. Extensive simulations and experiments for an actual deployment show a significant increase in the accuracy of the maintained minimum-cost path information, compared to the typically used local broadcasting approach.
无线传感器网络中最小代价路径信息的分布式维护
无线传感器网络中通信链路的质量通常表现出显著的不对称性和随时间的变化,例如,由于传输功率的异构设置,移动节点或变化的外部干扰。这使得节点很难准确地维护系统级属性,例如从节点到给定参考节点的最小能量路径,这是许多协议所要求的。在本文中,我们介绍了一种分布式服务,它允许节点维护与最小成本路径相关的准确信息,例如它的成本或该路径上的父节点。采用控制n跳转发,处理非对称链路,每个节点传播最小代价路径和连通性信息,允许网络中每个连接节点迭代导出最小代价路径信息。这种受控的n跳转发是重复的,以避免由于链路质量的动态变化而导致信息陈旧。服务的参数允许在精度和开销之间进行权衡。我们将研究影响这种权衡的部署特征,以及如何相应地对服务进行参数化。实际部署的大量模拟和实验表明,与通常使用的本地广播方法相比,维护的最小成本路径信息的准确性显着提高。
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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