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Robust Wireless Sensor Networks for Transmission Line Monitoring in Taiwan

机译:台湾传输线路监控的强大无线传感器网络

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Based on topological and geometrical data of an actual national power grid, this paper first presents the statistical characteristics of a transmission line monitoring wireless sensor network (WSN). We have discovered that the length of a transmission line follows a Weibull distribution. The number of towers in a transmission line has a Negative Binomial distribution, and the distance between two adjacent towers is Gamma distributed. Using this topology information, we further study the robustness of a WSN for transmission line monitoring. Compared to controlling node degree, we have found that robustness can be better achieved by providing multiple node-disjoint paths between a communication node and the control center. We have developed an algorithm to find the minimum communication range in achieving a desired robustness. Through extensive numerical results, we have confirmed that it is possible to guarantee robustness against a single node failure as long as we can provide a communication range of at least 1.09 km.
机译:基于实际国家电网的拓扑和几何数据,本文首先介绍了传输线监控无线传感器网络(WSN)的统计特性。我们已经发现传输线的长度遵循Weibull分布。传输线中的塔的数量具有负二项分分布,并且两个相邻塔之间的距离是伽马分布。使用这种拓扑信息,我们进一步研究了WSN用于传输线路监控的鲁棒性。与控制节点度相比,我们已经发现通过在通信节点和控制中心之间提供多个节点不相交的路径,可以更好地实现鲁棒性。我们开发了一种算法,可以找到实现所需的鲁棒性的最小通信范围。通过广泛的数值结果,我们已经确认可以保证对单个节点故障的鲁棒性,只要我们可以提供至少1.09公里的通信范围。

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