Enhancing Wi-SUN AMI Network Resilience by using Emergency Gateway with Optimal Placement

Amnart Boonkajay, P. Tan, Lee Kee Goh, Syed Naveen Altaf Ahmed, Sumei Sun
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引用次数: 1

Abstract

Radio interference or jamming can cause isolated area in advanced metering infrastructure (AMI) based on Wire-less smart utility network (Wi-SUN), in which conventional recovery techniques cannot cope with. In this paper, we deploy narrowband internet-of-things (NB-IoT) interface to some smart meters to act as emergency gateway, called ResiLite. An optimal ResiLite placement algorithm for enhancing network resilience is proposed. We define an implicit resilience metric based on path diversity and cluster closeness. The defined metric is used to form an integer linear programming (ILP) problem, then we solve the ILP to obtain optimal ResiLite placement. Simulation results show that the optimal ResiLite placement improves Wi-SUN AMI network resilience (defined as the number of surviving nodes with packet delivery ratio (PDR) above 99% under disturbance) by up to 167% compared to an AMI without ResiLite, and up to 29% compared to uniformly random ResiLite placement, respectively.
优化配置应急网关增强Wi-SUN AMI网络弹性
在基于无线智能公用事业网络(Wi-SUN)的先进计量基础设施(AMI)中,无线电干扰或干扰会造成孤立区,这是传统恢复技术无法应对的。在本文中,我们将窄带物联网(NB-IoT)接口部署到一些智能电表上,作为应急网关,称为ResiLite。提出了一种增强网络弹性的最优弹性石放置算法。我们定义了一个基于路径多样性和聚类紧密度的隐式弹性度量。利用所定义的度量形成一个整数线性规划(ILP)问题,然后求解ILP以获得最优的弹性石布局。仿真结果表明,与没有ResiLite的AMI相比,最优的ResiLite布局将Wi-SUN AMI网络的弹性(定义为在干扰下数据包投递率(PDR)高于99%的幸存节点数量)提高了167%,与均匀随机的ResiLite布局相比,分别提高了29%。
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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