On joint sequence design for feedback-based two-stage switch architecture

Bing Hu, K. Yeung
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引用次数: 7

Abstract

An N times N feedback-based two-stage switch is configured using a pre-determined and periodic joint sequence of N joint configurations. The joint sequence used is characterized by both in-order packet delivery and staggered symmetry properties. In this paper, we focus on designing optimal joint sequences. We first divide all possible joint sequences into four classes, with staggered symmetry property only, with in-order packet delivery property only, with both properties and with none of the properties. We then show that anchor output and ordered joint sequence are the necessary and sufficient conditions for packet inorder delivery. Since the staggered symmetry property is necessary for efficient feedback path implementation, we calculate that there are [(N-1)!]2 joint sequences with both inorder packet delivery and staggered symmetry properties. In order to find out the optimal joint sequence that can minimize the switch delay performance for a given traffic profile, we believe it can only be achieved by searching through the whole pool of [(N-1)!]2 joint sequences.
基于反馈的两级开关结构联合序列设计
基于N * N反馈的两级开关采用N个关节配置的预先确定的周期关节序列进行配置。所使用的联合序列具有按顺序发送数据包和交错对称的特性。本文主要研究最优连接序列的设计问题。我们首先将所有可能的联合序列分为四类,仅具有交错对称性质,仅具有序包传递性质,同时具有这些性质和不具有任何性质。然后证明了锚输出和有序联合序列是数据包有序传递的充分必要条件。由于交错对称特性对于有效的反馈路径实现是必要的,我们计算出有[(N-1)![2]具有无序包传递和交错对称性质的联合序列。对于给定的流量轮廓,为了找出能使交换机延迟性能最小的最优联合序列,我们认为只能通过搜索整个池[(N-1)!]来实现。2个联合序列。
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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