DOS—用于数据中心的可扩展光交换机

Xiaohui Ye, Yawei Yin, S. Yoo, P. Mejia, R. Proietti, V. Akella
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引用次数: 242

摘要

本文讨论了用于数据中心内可扩展和高吞吐量互连的数据中心光交换机(DOS)的体系结构和性能研究。DOS利用基于阵列波导光栅路由器(AWGR)的交换结构的波长路由特性,允许在波长域内解决争用。仿真结果表明,与电子开关或先前提出的光开关架构(如OSMOSIS[4,5]和Data Vortex[6,7])相比,DOS即使在高输入负载下也具有更低的延迟和更高的吞吐量。这些特点,再加上单个交换机结构上非常高的端口数,使得DOS对数据中心应用具有吸引力,因为数据中心的流量模式已知具有高临时峰值[13]。DOS利用AWGR结构的独特特性来减少仲裁的延迟和复杂性。我们使用周期精确的网络模拟器对DOS进行了详细的分析。结果表明,DOS的延迟几乎与输入端口的数量无关,即使在非常高(约90%)的输入负载下也不会饱和。此外,我们表明,即使在2到4个波长下,DOS的性能也明显优于基于最先进的扁平蝴蝶拓扑结构的电气开关网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DOS - A scalable optical switch for datacenters
This paper discusses the architecture and performance studies of Datacenter Optical Switch (DOS) designed for scalable and high-throughput interconnections within a data center. DOS exploits wavelength routing characteristics of a switch fabric based on an Arrayed Waveguide Grating Router (AWGR) that allows contention resolution in the wavelength domain. Simulation results indicate that DOS exhibits lower latency and higher throughput even at high input loads compared with electronic switches or previously proposed optical switch architectures such as OSMOSIS [4, 5] and Data Vortex [6, 7]. Such characteristics, together with very high port count on a single switch fabric make DOS attractive for data center applications where the traffic patterns are known to be bursty with high temporary peaks [13]. DOS exploits the unique characteristics of the AWGR fabric to reduce the delay and complexity of arbitration. We present a detailed analysis of DOS using a cycle-accurate network simulator. The results show that the latency of DOS is almost independent of the number of input ports and does not saturate even at very high (approx 90%) input load. Furthermore, we show that even with 2 to 4 wavelengths, the performance of DOS is significantly better than an electrical switch network based on state-of-the-art flattened butterfly topology.
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