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Topological Design of Computer Communication Network Structures: A Comprehensive Review

机译:计算机通信网络结构的拓扑设计:综述

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Background: One of the key considerations in the topological design of a network is the fault tolerance and survivability of the network topology. A deterministic measure for fault tolerance proposed by computer scientist and researchers is the k-node connectivity number of the network graph. Fault may happen at the physical level or at the software level. Method: A few heuristics and methods are proposed in the literature for the design of k-node connected network topological structures. The methods are analyzed on the parameters such as link optimality, computational efforts, repeated searching of nodes, adopting node numbering techniques, mathematical modelling, generality of the methods etc. Findings: This article portrays the comprehensive study and investigation of existing works and current developments on the design of k-node connected topological design of computer communication network structures, applicable for both wired and wireless network structures. This paper also highlights on the various design methods applicable for specific cases and also compares the existing and current methods, for the design parameters considered. Applications/Improvement: The study concludes by stating that the previous methods and strategies are restricted only to a few network design parameters. However there is no single method which addresses most of the issues, hence there is a scope for future exploration design methods.
机译:背景技术:网络拓扑设计中的关键考虑因素之一是网络拓扑的容错性和可生存性。计算机科学家和研究人员提出的确定容错性的措施是网络图的k节点连接数。故障可能发生在物理级别或软件级别。方法:文献中提出了一些启发式方法和方法来设计k节点连接的网络拓扑结构。对这些方法进行了分析,包括链接优化,计算量,节点的重复搜索,采用节点编号技术,数学建模,方法的通用性等。结果:本文对现有工作和当前的发展进行了全面的研究和调查。计算机通信网络结构的k节点连接拓扑设计的研究,适用于有线和无线网络结构。本文还重点介绍了适用于特定情况的各种设计方法,并针对考虑的设计参数比较了现有方法和当前方法。应用程序/改进:该研究的结论是指出以前的方法和策略仅限于少数网络设计参数。但是,没有一种方法可以解决大多数问题,因此未来的勘探设计方法还有一定的余地。

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