Yanli Zhang, Changde Li, Y. Shi, Jie Xiao, Bin Wu, H. Wen, Xiaohong Jiang
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引用次数: 0
摘要
DCN (Data Center Network)是云服务中各种应用的支撑平台。由于光交换具有高带宽、低时延和低能耗等优点,成为可扩展DCN的一种很有前途的交换解决方案。近年来,为了简化DCN内部连接,使DCN具有充分的可扩展性,提出了一种在给定光网络中采用分布式组件集(机架和光核心交换机)的DCN新架构。由于核心交换机在对外业务接入和节点间业务交换中都起着重要的作用,单个核心交换机故障可能会导致DCN的流量拥塞或崩溃。本文在现有分布式DCN的基础上,研究了如何部署备用核心交换机,以应对任意单核心交换机故障,同时使总保护成本最小化。当核心交换机发生故障时,所有未受影响的流量保持原有路由不变,并对受影响的流量采用预先设定的保护策略(重路由和倒换)。为了解决这一问题,我们制定了一个整数线性规划(ILP),将备用核心交换机放置在适当的节点上,并确定了快速流量恢复机制。我们通过广泛的仿真研究验证了所提出的设计。
Deployment of backup core switch in scalable distributed data center networks
Data Center Network (DCN) is the supporting platform for various applications in cloud services. As optical switch offers high bandwidth, low latency and reduced energy consumption, it becomes a promising switching solution for scalable DCN. Recently, a new DCN architecture with distributed component sets (racks and optical core switches) in a given optical network has been proposed to simplify the DCN internal connection and make the DCN fully scalable. Because the core switches play an important role in both external service access and inter-node traffic switching, a single core switch failure may lead to traffic congestion or collapse of a DCN. Based on an existing distributed DCN, in this paper we consider how to deploy a backup core switch to fight against an arbitrary single core switch failure while minimizing the total protection cost. Upon a core switch failure, all unaffected traffics keep their original routes unchanged, and predefined protection strategy (rerouting and switching) will take effect for the affected traffics. To solve this problem, we formulate an integer linear program (ILP) to place the backup core switch at a proper node and determine the fast traffic recovery mechanism. We validate the proposed design by extensive simulation studies.