Twisted and Folded Clos-Network Design Model With Two-Step Blocking Probability Guarantee

Haruto Taka;Takeru Inoue;Eiji Oki
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Abstract

A data center network often employs a Clos-network structure due to scalability nature. A previous design model analyzed blocking probability to guarantee the quality of Clos network. However, the conditions to guarantee the blocking probability in these models are stringent, which shrinks the switching capacity. This letter proposes a model that relaxes network design constraints to maximize switching capacity while guaranteeing blocking probability in a two-step manner, where the proposed model divides intermediate switches into two groups. Numerical results show that the proposed model achieves a larger switching capacity than a conventional one-step model.
具有两步阻塞概率保证的扭曲和折叠 Clos 网络设计模型
出于可扩展性考虑,数据中心网络通常采用 Clos 网络结构。以往的设计模型通过分析阻塞概率来保证 Clos 网络的质量。然而,这些模型中保证阻塞概率的条件都很苛刻,从而降低了交换容量。本文提出了一种放宽网络设计约束的模型,在保证阻塞概率的同时,分两步实现交换容量最大化,其中提出的模型将中间交换机分为两组。数值结果表明,与传统的一步式模型相比,所提出的模型实现了更大的交换容量。
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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