Optical circuit granularity impact in TCP-dominant hybrid data center networks

H. Rastegarfar, Kamran Keykhosravi, K. Szczerba, E. Agrell, L. LaComb, M. Glick
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引用次数: 2

Abstract

Hybrid networking, based on electronic packet switching and optical circuit switching, has been proposed to resolve the existing switching bottlenecks in data centers in an energy-efficient and cost-effective fashion. We consider the problem of resource provisioning in hybrid data centers in terms of optical circuit switching capacity and granularity. The number of fibers connected to server racks, the number of wavelengths per fiber, and the ratio of capacity provided by the optical circuit-switched portion of the network to that of the electronic packet-switched portion are crucial design parameters to be optimized during the data center planning phase. These parameters in conjunction with the additive-increase, multiplicative-decrease (AIMD) congestion control mechanism of the Transmission Control Protocol (TCP) pose a significant impact on data center network performance. In this paper, we examine the combined impact of optical bandwidth settings and TCP dynamics using event-driven simulations. Our analysis reveals the strong dependence of overall network throughput on channel capacity (i.e., the bit rate per wavelength channel) and points to the advantages of optical bandwidth consolidation employing higher-order modulation formats.
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tcp主导混合数据中心网络中光电路粒度的影响
基于电子分组交换和光电路交换的混合网络以一种节能、经济的方式解决数据中心现有的交换瓶颈。本文从光路交换容量和粒度两个方面考虑混合数据中心的资源配置问题。连接到服务器机架的光纤数量、每根光纤的波长数量以及网络的光电路交换部分与电子分组交换部分提供的容量之比是在数据中心规划阶段需要优化的关键设计参数。这些参数与传输控制协议(TCP)的加性增加、乘性减少(AIMD)拥塞控制机制一起对数据中心网络性能产生重大影响。在本文中,我们使用事件驱动模拟研究了光带宽设置和TCP动态的综合影响。我们的分析揭示了整个网络吞吐量对信道容量(即每波长信道的比特率)的强烈依赖,并指出了采用高阶调制格式的光带宽整合的优势。
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