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Minimizing scheduling complexity with a Clos-network space-space-memory (SSM) packet switch

机译:使用Clos网络空间-空间内存(SSM)数据包交换机将调度复杂度降至最低

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In this paper we propose a three-stage space-space-memory (SSM) Clos-network switch that uses crosspoint buffers in the third-stage modules to eliminate the need for performing multiple iterations in for port matching. We show that the proposed switch not only reduces the configuration complexity of space-space-space (S3) switches but also improves switching performance and relaxes configuration timing. We demonstrate these advantages by comparing the performance of the proposed switch using the weighted module-first no-port (WFM-NP) matching scheme to that of a S3 switch using the original scheduling scheme (with port matching). For higher utilization of the SSM switch, we propose the weighted central-module-link matching (WCMM) scheme. The WCMM scheme rescinds multiple iterations for module matching and yet, it achieves higher performance than the WFM-NP scheme. The advantages of the SSM switch are achieved without memory speedup. The memory addition is a small cost to trade for complexity reduction and performance improvement.
机译:在本文中,我们提出了一种三级空间-空间-内存(SSM)Clos网络交换机,该交换机在第三级模块中使用交叉点缓冲区,从而无需在端口匹配中执行多次迭代。我们表明,所提出的交换机不仅降低了空间-空间-空间(S 3 )交换机的配置复杂性,而且提高了交换性能并放宽了配置时间。通过将使用加权模块优先无端口(WFM-NP)匹配方案的拟议交换机的性能与使用原始调度方案的S 3 交换机的性能进行比较,我们证明了这些优势。匹配)。为了提高SSM交换机的利用率,我们提出了加权中央模块链路匹配(WCMM)方案。 WCMM方案取消了用于模块匹配的多次迭代,但是,它实现了比WFM-NP方案更高的性能。 SSM交换机的优点是在不提高内存速度的情况下实现的。存储器的增加是为了降低复杂性和提高性能而付出的少量交易成本。

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