链路不可靠无线传感器网络的容错随机路由

U. Wijetunge, A. Pollok, S. Perreau
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引用次数: 7

摘要

及时可靠地提供关键信息对于军事应用和救灾应用至关重要。这些应用程序依赖于通信网络,而通信网络实际上是通过不可靠的链路运行的。在通信链路不可靠的网络中,如何在降低端到端时延的同时提高分组传输率是随机路由面临的主要挑战。针对链路不可靠的无线传感器网络,提出了一种新的分散随机路由算法,以提高网络的分组传送率和端到端时延。我们引入了一种基于离散时间吸收马尔可夫链的评估框架来评估分组传送率和端到端延迟。仿真结果表明,与现有的去中心化路由算法相比,我们提出的路由算法在分组传输率和端到端延迟方面都有显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault-tolerant stochastic routing for wireless sensor networks with unreliable links
Timely and reliable delivery of critical information is vital for military applications and disaster relief applications. Such applications rely on communications networks, which in practice operate via unreliable links. Improving the packet delivery ratio while reducing the end-to-end delay is a major challenge for stochastic routing in networks with unreliable communication links. In this paper, we propose a novel decentralized stochastic routing algorithm to improve the packet delivery ratio and end-to-end delay for wireless sensor networks (WSNs) with unreliable links. We introduce an evaluation framework based on discrete time absorbing Markov chains to evaluate the packet delivery ratio and end-to-end delay. Simulation results show that our proposed routing algorithm performs significantly better in terms of packet delivery ratio and end-to-end delay when compared to existing decentralized methods.
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