A self-adaptive threshold based scheduling algorithm for input-queued switches

Yuan Sun, Qingsheng Hu, Jiangtao Han, Zhigong Wang
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引用次数: 2

Abstract

This paper presents a self-adaptive threshold based round-robin scheduling algorithm SATRR for input-queued switches. In SATRR, the matched input and output in certain cell time will be locked by two self-adaptive thresholds, whenever the queue length or the wait-time of the head cell in corresponding virtual output queue (VOQ) exceeds the thresholds. For a pair of locked input and output, they will be matched directly during succeeding cell times until unlocked. Particularly, by simultaneously employing the queue length threshold and the wait-time threshold which are updated every cell time, SATRR archives a good tradeoff between performance and hardware complexity. Simulation results indicate that the delay performance of SATRR is competitive when compared to other typical scheduling algorithms under various traffic patterns
一种基于自适应阈值的输入队列交换机调度算法
提出了一种基于自适应门限的输入队列交换机轮循调度算法。在SATRR中,当相应的虚拟输出队列(VOQ)中头单元的队列长度或等待时间超过阈值时,在一定单元时间内匹配的输入和输出将被两个自适应阈值锁定。对于一对锁定的输入和输出,它们将在随后的单元时间内直接匹配,直到解锁。特别是,通过同时使用队列长度阈值和等待时间阈值(每个单元时间更新),SATRR在性能和硬件复杂性之间进行了很好的权衡。仿真结果表明,在各种交通模式下,与其他典型调度算法相比,SATRR的延迟性能具有一定的竞争力
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