可靠的无线传感器网络拓扑控制关键的物联网应用

D. Deif, Y. Gadallah
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引用次数: 7

摘要

时间拓扑控制(TTC)是无线传感器网络(WSNs)文献中被广泛研究的重要课题之一。TTC被用作管理密集WSNs(即以高水平SN冗余为特征的WSNs)中传感器节点(SNs)的睡眠/唤醒周期的工具,无论是以计划还是随机方式部署。现有TTC协议(ttcp)的主要目标是最大化WSN的生存时间和最小化网络中的数据包冲突。然而,由于其显著的通信和处理开销,现有的ttcp对潜在的SN故障的反应可能很慢,因此不适合服务于关键物联网应用的WSN,在这些应用中,WSN运行的可靠性是一个主要问题。在本文中,我们提出了一种针对可靠WSN部署的TTCP。提出的协议是基于WSN部署由许多不相交的连接覆盖组成的假设。我们使用网络模拟器实现了所提出的协议,并将所提出的协议应用于不同的部署场景。我们在两个协议性能指标方面提出并讨论了实验结果:由于潜在的SN故障而产生的开销和检测和修复WSN功能所需的时间。还强调了影响这些性能指标的因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliable wireless sensor networks topology control for critical internet of things applications
One of the important topics that have been extensively studied in the Wireless Sensor Networks (WSNs) literature is Temporal Topology Control (TTC). TTC is used as a tool to manage the sleep/wake cycles of sensor nodes (SNs) in dense WSNs (i.e. WSNs characterized by a high level of SN redundancy), whether deployed in a planned or a random fashion. The primary objectives of existing TTC protocols (TTCPs) are maximizing WSN lifetime and minimizing packet collision in the network. However, due to their significant communication and processing overhead, existing TTCPs can be slow in reacting to potential SN failures and hence are not suitable for WSNs serving critical Internet of Things applications where the reliability of WSN operation is a major concern. In this paper, we propose a TTCP targeted for reliable WSN deployments. The proposed protocol is based on the assumption that the WSN deployment is composed of a number of disjoint connected-covers. We implement the proposed protocol using a network simulator and apply the proposed protocol on different deployment scenarios. We present and discuss the experimental results in terms of two protocol performance metrics: the incurred overhead and the time required to detect and repair the functionality of the WSN due to potential SN failures. The factors which affect these performance metrics are also highlighted.
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