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Design of the Switching Controller for the High-Capacity Non-Blocking Internet Router

机译:大容量无阻塞互联网路由器的交换控制器设计

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摘要

The sequential greedy scheduling (SGS) algorithm is a scalable maximal matching algorithm. This algorithm was conceptually proposed and well received since it provides non-blocking in an Internet router with input buffers and a cross-bar, unlike other existing implementations. In this paper, we implement a new design of the SGS algorithm, and determine its exact behaviour, performance and QoS that it provides. We examine different design options and measure the performance of their implementations in terms of their scalability and speed. It will be shown that multiple scheduler modules of a terabit Internet router can be implemented on a low-cost field-programmable gate-array (FPGA) device, and that the processing can be performed within the desired time slot duration. Proper functioning of the implemented scheduler was confirmed through thorough software and hardware testing.
机译:顺序贪婪调度(SGS)算法是一种可扩展的最大匹配算法。该算法在概念上被提出并广受好评,因为与其他现有实现不同,该算法在具有输入缓冲区和交叉开关的Internet路由器中提供了非阻塞性。在本文中,我们实现了SGS算法的新设计,并确定了其提供的确切性能,性能和QoS。我们研究了不同的设计选项,并根据其可扩展性和速度来衡量其实现的性能。将会显示,可以在低成本的现场可编程门阵列(FPGA)设备上实现兆位Internet路由器的多个调度程序模块,并且可以在所需的时隙持续时间内执行该处理。通过全面的软件和硬件测试,确认了已实施的调度程序的正常功能。

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