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Flow-Aware Routing and Forwarding for SDN Scalability in Wireless Data Centers

机译:无线数据中心中可感知SDN的流感知路由和转发

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摘要

Software-defined networking (SDN) paradigm and high-speed wireless technologies have been widely adopted by industries to improve the performance of data center networks. In SDN, a switch commonly uses ternary content addressable memory (TCAM) to store rules for fast flow table lookup. However, due to the limited TCAM entries, rule replacement will occur frequently when traffic load in data centers is heavy. This issue will be more serious when flow characteristics in data centers are diverse. Although wireless transmissions can benefit for reducing TCAM usage, we observe that routing and forwarding designs without considering the flow characteristics will result in rule replacement storm in switches and significantly harm the SDN scalability for wireless data centers. As a result, switches will issue massive flow setup requests which cannot be processed by an SDN controller in real time. This paper studies the SDN scalability problem with the objective of minimizing the number of flow setup requests under the hybrid architecture with wired and wireless links. We propose a routing and forwarding algorithm with the consideration of flow characteristics to tackle the problem. A series of simulation results agrees our observations and shows that our algorithm outperforms two well-known solutions for wired data centers and three approaches for wireless data centers. The results also provide useful insights and guidelines for designing SDN-based wireless data centers.
机译:软件定义网络(SDN)范例和高速无线技术已被业界广泛采用,以提高数据中心网络的性能。在SDN中,交换机通常使用三态内容可寻址存储器(TCAM)来存储用于快速流表查找的规则。但是,由于TCAM条目的限制,当数据中心的通信量很大时,规则替换将经常发生。当数据中心的流量特性不同时,此问题将更加严重。尽管无线传输可以减少TCAM的使用,但我们发现路由和转发设计没有考虑流量特性,将导致交换机中的规则替换风暴,并严重损害无线数据中心的SDN可扩展性。结果,交换机将发出大量流设置请求,SDN控制器无法实时处理这些请求。本文研究SDN可扩展性问题,其目的是在具有有线和无线链路的混合体系结构下最大程度地减少流设置请求的数量。我们提出一种考虑流量特性的路由和转发算法来解决该问题。一系列仿真结果与我们的观察结果一致,表明我们的算法优于有线数据中心的两个著名解决方案和无线数据中心的三种方法。结果还为设计基于SDN的无线数据中心提供了有用的见识和指导。

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