Scheduling Algorithm and Evaluating Performance of a Novel 3D-VOQ switch

Ding‐Jyh Tsaur, Hsuan-Kuei Cheng, Chia-Lung Liu, Woei Lin · 2006

This paper studies scheduling algorithms and evaluates the performance of high-speed switching systems. A novel architecture for three-dimensional Virtual Output Queue (3D-VOQ) switches is proposed with a suitable scheduling algorithm to improve the competitive transfer of service. This 3D-VOQ switch, which exactly emulates an output-queued switch with a broad class of service scheduling algorithms, requires no speedup, independently of its incoming traffic pattern and switch size. First, an N×N 3D-VOQ switch is proposed. In this contentionfree architecture, the head-of-line problems are eliminated using a few virtual output queues (VOQ) from input ports and the output sides were arranged using sufficient separate queues. Next, a Small Time-to-leave Cell First (STCF) algorithm is proposed to generate a stable many-to-many assignment. Finally, analysis and simulation confirm the performance of 3D-VOQ and its satisfying high/low QoS requirements. Key words: QoS guarantees, Virtual Output Queue (VOQ), switching system, packet switching, 3D-VOQ.

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