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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Novel Algorithms for Reliability Evaluation of Remotely Deployed Wireless Sensor Networks
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Novel Algorithms for Reliability Evaluation of Remotely Deployed Wireless Sensor Networks

机译:远程部署无线传感器网络可靠性评估的新型算法

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摘要

Wireless sensor networks can be deployed in remote areas for monitoring rainforest, bio-diversity, detecting forest fire or even surveillance. In such remote monitoring applications, sensor nodes are deployed in unattended environments that make them vulnerable to different kind of failures. Hence, it is extremely important to perform a reliability analysis as a precursor to WSN deployment. This paper investigates reliability analysis and makes two contributions. First, an algorithm based on ordered binary decision diagram is proposed. Second, an algorithm based on Monte Carlo simulation is proposed to compute the reliability considering both individual component and common cause failure. There are some earlier works that focuses on either of the failure types but not both. In this work, battery model of the nodes are taken into account to have a realistic estimate of node reliability. The proposed model can be readily extended for any outdoor deployment scenario to assess reliability before actual deployment and hence explore meaningful insight regarding network design for instance, identifying critical failure sequences. The results of both algorithms for benchmark network configurations are validated for similar setting against existing literature. The results show that with more nodes network reliability gradually reaches a steady state (250 onwards) for a stable environment (low individual component failure due to transient errors) subject to moderate common cause failure probability (30%).
机译:无线传感器网络可以在偏远地区部署,以监测雨林,生物多样性,检测森林火灾甚至监视。在这种远程监控应用中,传感器节点部署在无人值守的环境中,使其容易受到不同类型的故障。因此,对WSN部署的前兆进行可靠性分析非常重要。本文调查了可靠性分析并进行两项贡献。首先,提出了一种基于有序二进制决策图的算法。其次,提出了一种基于Monte Carlo仿真的算法来计算考虑各个组件和常见原因失败的可靠性。有一些早期的作品专注于任何故障类型,但都不是两者。在这项工作中,考虑了节点的电池模型,以具有节点可靠性的实际估计。对于任何户外部署方案,可以很容易地扩展所提出的模型,以评估实际部署前的可靠性,因此探讨了有关网络设计的有意义的洞察力,识别关键故障序列。用于基准网络配置的两种算法的结果被验证了对现有文献的类似设置。结果表明,通过更多节点网络可靠性逐渐达到稳定状态(250向后),以进行稳定的环境(由于瞬态误差,由于瞬态误差而低的单独部件故障),受到适度的常见原因失效概率(30%)。

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