Impact of region-based faults on the connectivity of wireless networks

Sujogya Banerjee, Arunabha Sen
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引用次数: 8

Abstract

The last few years have seen considerable interest in the wireless networking research community in analyzing the connectivity of wireless ad-hoc networks formed by a set of nodes distributed in a two dimensional plane (deployment area) with a (i) uniform probability density function and (ii) uniform transmission range. Although several important and interesting results are known in this domain, most of the connectivity studies consider a fault-free scenario where all nodes are available for network formation and do not consider failures among nodes caused by one reason or another. In very few studies where faults are considered, they are usually considered to be random in nature, i.e., the probability of a node failing is independent of its location in the deployment area. However, such fault scenario is inadequate to capture many realistic situations where the faulty nodes are spatially correlated. This is particularly true in combat environment where an enemy bomb can destroy a subset of nodes confined to a region. In this paper we investigate the impact of region-based faults on the connectivity of wireless networks. Through analysis and simulation, we provide results relating the probability of a network being connected as transmission range and the size of fault-region are varied. If dmin(G) denotes the minimum node degree of the network, we provide the analytical expression for P(dmin(G) ≥ k), which represents the probability of the minimum node degree being at least k, for k = 1. Moreover, we compute P(κ(G) ≥ k), where κ(G) represents the connectivity of the graph G formed by the distribution of nodes in the deployment area and examine the relationship between P(dmin(G) ≥ k) and P(κ(G) ≥ k) when k = 1.
区域故障对无线网络连通性的影响
过去几年,无线网络研究界对分析由分布在二维平面(部署区域)上的一组节点组成的无线自组织网络的连通性产生了相当大的兴趣,这些网络具有(i)均匀概率密度函数和(ii)均匀传输范围。虽然在这个领域有几个重要而有趣的结果,但大多数连通性研究都考虑了一个无故障的场景,即所有节点都可用于网络形成,而不考虑节点之间由于某种原因导致的故障。在很少考虑故障的研究中,通常认为故障本质上是随机的,即节点故障的概率与节点在部署区域中的位置无关。然而,这种故障场景不足以捕获故障节点在空间上相关的许多现实情况。这在战斗环境中尤其如此,因为敌人的炸弹可以摧毁一个区域内的节点子集。本文研究了基于区域的故障对无线网络连通性的影响。通过分析和仿真,得到了网络连通概率随传输距离和断层大小的变化而变化的结果。若dmin(G)表示网络的最小节点度,则给出P(dmin(G)≥k)的解析表达式,表示当k = 1时,最小节点度≥k的概率。此外,我们计算P(κ(G)≥k),其中κ(G)表示部署区域内节点分布形成的图G的连通性,并检查k = 1时P(dmin(G)≥k)与P(κ(G)≥k)之间的关系。
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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