首页> 外文期刊>Journal of communications and networks >A scalable multi-stage packet-switch for data center networks
【24h】

A scalable multi-stage packet-switch for data center networks

机译:用于数据中心网络的可扩展的多级分组交换机

获取原文
获取原文并翻译 | 示例
           

摘要

The growing trends of data centers over last decades in- cluding social networking, cloud-based applications, services, and storage technologies enabled many advances to take place in the networking area. Recent changes imply continuous demand for bandwidth to manage the large amount of packetized traffic. Clus- ter switches and routers make the switching fabric in a data cen- ter network (DCN) environment. They are employed to provide in- terconnectivity between elements of the same DC and inter DCs. To handle the constantly variable loads, switches need deliver outstanding throughput along with resiliency and scalability for DCN requirements. Conventional DCN switches adopt crossbars or/and blocks of memories in multistage interconnection architec- tures (commonly 2-tiers or 3-tiers). However, current multistage switches, with their space-memory variants, are either too complex to implement, have poor performance, or not cost effective.We pro- pose a novel and highly scalable multistage switch design based on networks-on-chip (NoC) fabrics for DCNs. In particular, we de- scribe a novel three-stage Clos-network packet-switch fabric with a round robin (RR) packets dispatching scheme where each central stage module is based on a unidirectional NoC (UDN), instead of the conventional single-hop crossbar fabric. The design, referred to as Clos-UDN, overcomes all the shortcomings of conventional mul- tistage architectures. In particular, the Clos-UDN switch: (i) Ob- viates 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 simula- tions are conducted to compare the Clos-UDN switch to some mul- tistage switches. Results show that the Clos-UDN outperforms con- ventional designs under different input traffics, making it highly appealing for ultra-high capacity DC networks.
机译:过去几十年来,数据中心的增长趋势,包括社交网络,基于云的应用程序,服务和存储技术,使网络领域取得了许多进步。最近的变化意味着对管理大量分组流量的带宽的持续需求。集群交换机和路由器构成了数据中心网络(DCN)环境中的交换结构。它们被用来提供相同DC和内部DC之间的互连。为了处理不断变化的负载,交换机需要提供出色的吞吐量以及DCN要求的弹性和可扩展性。传统的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。但是,当前的多级交换机及其空间存储器变型太复杂,难以实现,性能不佳或成本效益不高。我们提出了一种新颖且高度可扩展的基于片上网络的多级交换机设计(NoC )用于DCN的结构。特别是,我们描述了一种具有循环(RR)数据包分配方案的新颖的三级Clos网络数据包交换结构,其中每个中央级模块都基于单向NoC(UDN),而不是传统的单级NoC(UDN)。蛇麻草横木织品。这种称为Clos-UDN的设计克服了传统多级架构的所有缺点。特别是Clos-UDN开关:(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的结构性质,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,以比较Clos-UDN开关和某些多级开关。结果表明,在不同的输入流量下,Clos-UDN的性能优于传统设计,因此对于超大容量DC网络具有很高的吸引力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号