crn中计算弹性虚拟骨干网的研究

Yi Hong, Donghyun Kim, Deying Li, Jiaofei Zhong, A. Tokuta
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引用次数: 2

摘要

近年来,人们研究了虚拟骨干网(VB)的概念,以提高无线网络的效率。由于节点故障是各种无线网络中最重要的故障类型,因此人们通过增加节点连接来提高VB的弹性。然而,在认知无线网络(crn)中,未授权用户(认知用户,cu)之间的通信中断很可能是由于授权用户(主用户,pu)导致的不可预测的信道不可用。因此,通过增强边缘连通性,可以大大提高VB在crn中的容错性。本文研究了如何在不可预见的PU活动下,在crn中生成具有最大生存期的容错VB。我们将此问题定义为最大寿命更坚固的虚拟主干(MLSVB)问题,并提出了一种启发式算法。据我们所知,这是第一个讨论crn中容错VB需求的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Computing Resilient Virtual Backbone in CRNs
Recently, the concept of virtual backbone (VB) has been investigated to improve the efficiency of wireless networks. Since node fault is the most significant failure type in various wireless networks, many efforts are made to improve the resilience of VB by increasing node connectivity. However, in cognitive radio networks (CRNs), communication disruption among unlicensed users (cognitive users, CUs) is likely due to the unpredictable channel unavailability caused by licensed users (primary users, PUs). As a result, the fault-tolerance of a VB in CRNs can be greatly improved by enhancing edge connectivity. This paper investigates how to generate a fault-tolerant VB with maximum lifetime in CRNs against unforeseen PU activities. We define this problem as the maximum lifetime sturdier virtual backbone (MLSVB) problem, and propose a heuristic algorithm for it. To the best of our knowledge, this is the first work to discuss about the requirements of fault-tolerant VB in CRNs.
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