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On service guarantees for input-buffered crossbar switches: A capacity decomposition approach by Birkhoff and von Neumann
Conference paper

On service guarantees for input-buffered crossbar switches: A capacity decomposition approach by Birkhoff and von Neumann

Cheng-Shang Chang, Wen-Jyh Chen and Hsiang-Yi Huang
IEEE International Workshop on Quality of Service, IWQoS, pp.79-86
1999

Abstract

crossbar switches generalized processor sharing Input buffered switches scheduling service guarantees Electrical and Electronic Engineering
Based on a decomposition result by Birkhoff (1946) and von Neumann (1953) for a doubly substochastic matrix, in this paper we propose a scheduling algorithm that is capable of providing service guarantees for input-buffered crossbar switches. Our service guarantees are uniformly good for all non-uniform traffic, and thus imply 100% throughput. The off-line computational complexity to identify the scheduling algorithm is O(N/sup 4.5/) for an N×N switch. Once the algorithm is identified, its on-line computational complexity is O(logN) and its on-line memory complexity is O(N 3 logN). Neither framing nor internal speedup is required for our approach.

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