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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Multistage-based switching fabrics for scalable routers
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Multistage-based switching fabrics for scalable routers

机译:可扩展路由器的基于多阶段的交换结构

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Rapidly growing demand for high-speed networks has prompted the investigation into scalable routers that are capable of forwarding data at the aggregate rate of multiterabits per second. Such a router contains many line cards (LCs) for admitting external links of various speeds. Those LCs are interconnected by a switching fabric to provide paths for packets to travel from arrival LCs to their respective departure LCs. The switching fabric employed in a router dictates the scalability and the overall performance of the router. It is thus crucial for future multiterabit routers to incorporate scalable switching fabrics capable of interconnecting large numbers of LCs. This work considers switching fabrics with distributed packet routing to achieve high scalability and low costs. Our fabrics are based on a multistage structure with different recirculation designs, where adjacent stages are interconnected according to the indirect n-cube connection style. They all compare favorably with an earlier multistage-based counterpart according to extensive simulation, in terms of performance measures of interest and hardware complexity. When queues are incorporated in the output ports of switching elements (SEs), the total number of stages required in our proposed fabrics to achieve a given performance level can be reduced substantially. The performance of those fabrics with output queues is evaluated under different "speedups" of the queues, where the speedup is the operating clock rate ratio of that at the SE core to that over external links. It is found via our simulation results that a small speedup of two is adequate for buffered switching fabrics comprising 4/spl times/8 SEs to deliver better performance than their nonbuffered counterparts with 50 percent more stages of SEs, when the fabric size is 256. The buffered switching fabrics under different traffic patterns are evaluated and discussed as well. Being scalable and of low costs, the proposed switching fabrics are ideally suitable for routers with large numbers of LCs.
机译:对高速网络的快速增长的需求促使人们对可扩展路由器进行了研究,这些路由器能够以每秒多TB的总速率转发数据。这种路由器包含许多线卡(LC),用于允许各种速度的外部链接。这些LC通过交换结构互连,为数据包提供从到达LC到其各自离开LC的路径。路由器中使用的交换结构决定了路由器的可伸缩性和整体性能。因此,对于未来的多千兆位路由器而言,至关重要的一点是要能够集成可互连大量LC的可扩展交换结构。这项工作考虑了使用分布式数据包路由的交换结构来实现高可伸缩性和低成本。我们的面料基于具有不同再循环设计的多级结构,其中相邻级根据间接n立方连接样式相互连接。根据广泛的仿真,就感兴趣的性能指标和硬件复杂性而言,它们都比早期的基于多级的同类产品优越。当将队列合并到交换元件(SE)的输出端口中时,我们提出的结构中为达到给定性能级别所需的总阶段数可以大大减少。这些具有输出队列的结构的性能是在队列的不同“加速”下评估的,其中加速是SE核心与外部链路上的工作时钟速率之比。通过我们的仿真结果发现,当结构尺寸为256时,对于包含4 / spl次/ 8 SE的缓冲交换结构,其小加速比2足以使它们的性能优于非缓冲结构(具有SE的50%)。还评估和讨论了不同流量模式下的缓冲交换结构。提议的交换结构具有可扩展性和低成本,非常适合具有大量LC的路由器。

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