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A Multi-Stage Packet-Switch Based on NoC Fabrics for Data Center Networks

机译:基于NoC结构的数据中心网络多级分组交换机

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摘要

Bandwidth-hungry applications such as Cloud computing, video sharing and social networking drive the creation of more powerful Data Centers (DCs) to manage the large amount of packetized traffic. Data center network (DCN) topologies rely on thousands of servers that exchange data via the switching backbone. Cluster switches and routers are employed to provide interconnectivity between elements of the same DC and inter DCs and must be able to handle the continuously variable loads. Hence, robust and scalable switching modules are needed. Conventional DCN switches adopt crossbars or/and blocks of memories in multistage interconnection architectures (commonly 2-Tiers or 3-Tiers). However, current multistage packet switch architectures, with their space-memory variants, are either too complex to implement, have poor performance, or not cost effective. In this paper, we propose a novel and highly scalable multistage packet-switch design based on Networks-on-Chip (NoC) fabrics for DCNs. In particular, we describe a novel three-stage packet-switch fabric with a Round-Robin packets dispatching scheme where each central stage module is based on a Unidirectional NoC (UDN), instead of a conventional single hop crossbar fabric. The proposed design, referred to as Clos- UDN, overcomes all the shortcomings of conventional multistage architectures. In particular, as we shall demonstrate, the proposed Clos-UDN architecture: (i) Obviates the need for a complex and costly input modules, by means of few, yet simple, input FIFO queues. (ii) Avoids the need for a complex and synchronized scheduling process over a high number of input-output modules and/or port pairs. (iii) Provides speedup, load balancing and path-diversity thanks to a dynamic dispatching scheme as well as the NoC based fabric nature. Extensive simulation studies are conducted to compare the proposed Clos-UDN switch to conventional multistage switches. Simulation results show that the Clos-UDN outperforms conventional design under a wide range of input traffic scenarios, making it highly appealing for ultra-high capacity DC networks.
机译:诸如云计算,视频共享和社交网络之类的带宽需求型应用推动了功能更强大的数据中心(DC)的创建,以管理大量打包流量。数据中心网络(DCN)拓扑依赖于数千个通过交换主干交换数据的服务器。群集交换机和路由器用于在同一DC和DC间的元素之间提供互连,并且必须能够处理不断变化的负载。因此,需要鲁棒且可扩展的交换模块。常规的DCN交换机在多级互连体系结构(通常为2层或3层)中采用交叉开关或/和存储块。然而,当前的多级分组交换架构及其空间存储器变型,要么实施起来太复杂,性能差,要么不具有成本效益。在本文中,我们提出了一种基于新颖的,高度可扩展的,基于DCN的片上网络(NoC)架构的多级分组交换设计。特别地,我们描述了一种具有Round-Robin分组调度方案的新颖的三级分组交换结构,其中每个中央级模块均基于单向NoC(UDN),而不是传统的单跳交叉开关结构。提议的设计称为Clos-UDN,克服了常规多级体系结构的所有缺点。特别是,正如我们将要演示的那样,建议的Clos-UDN体系结构:(i)通过少量但简单的输入FIFO队列,消除了对复杂且昂贵的输入模块的需求。 (ii)避免了对大量输入输出模块和/或端口对进行复杂且同步的调度过程的需求。 (iii)由于采用了动态分配方案以及基于NoC的架构性质,因此可以提供加速,负载平衡和路径多样性。进行了广泛的仿真研究,以将建议的Clos-UDN开关与常规多级开关进行比较。仿真结果表明,Clos-UDN在各种输入流量情况下均优于传统设计,因此对于超大容量DC网络具有很高的吸引力。

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    Hassen F; Mhamdi L;

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  • 年度 2015
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  • 正文语种 en
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