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A Clos-Network Switch Architecture based on Partially-Buffered Crossbar Fabrics

机译:基于部分缓冲交叉结构的Clos网络交换架构

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摘要

Modern Data Center Networks (DCNs) that scale to thousands of servers require high performance switches/routers to handle high traffic loads with minimum delays. Today’s switches need be scalable, have good performance and -more importantly- be cost-effective. This paper describes a novel threestage Clos-network switching fabric with partially-buffered crossbar modules and different scheduling algorithms. Compared to conventional fully buffered and buffer-less switches, the proposed architecture fits a nice model between both designs and takes the best of both: i) less hardware requirements which considerably reduces both the cost and the implementation complexity, ii) the existence of few internal buffers allows for simple and highperformance scheduling. Two alternative scheduling algorithms are presented. The first is scalable, it disperses the control function over multiple switching elements in the Clos-network. The second is simpler. It places some control on a central scheduler to ensure an ordered packets delivery. Simulations for various switch settings and traffic profiles have shown that the proposed architecture is scalable. It maintains high throughput, low latency performance for less hardware used.
机译:可扩展到数千台服务器的现代数据中心网络(DCN)需要高性能的交换机/路由器来以最小的延迟处理高流量负载。当今的交换机需要可扩展,具有良好的性能,而且更重要的是要具有成本效益。本文介绍了一种新型的具有部分缓冲交叉开关模块和不同调度算法的三级Clos网络交换结构。与传统的全缓冲和无缓冲交换机相比,所提出的体系结构适合两种设计之间的良好模型,并兼具两者的优点:i)较少的硬件需求,从而大大降低了成本和实现复杂性,ii)数量很少内部缓冲区允许简单而高性能的调度。提出了两种可选的调度算法。第一个是可扩展的,它将控制功能分散在Clos网络中的多个交换元件上。第二个更简单。它将一些控制放在中央调度程序上,以确保有序的数据包传递。对各种交换机设置和流量配置文件的仿真表明,所提出的体系结构是可扩展的。它保持了高吞吐量,低延迟性能,并减少了硬件使用量。

著录项

  • 作者

    Hassen F; Mhamdi L;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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