Autonomic Resource Management for Multiple-Spanning-Tree Metro-Ethernet Networks

Shibiao Lin, Srikant Sharma, T. Chiueh
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引用次数: 3

Abstract

Viking [13] is a multi-spanning-tree Ethernet architecture that is designed to leverage commodity Ethernet switches to support Metro-Ethernet services. In particular, it exploits VLAN switching to provide network-wide load balancing across a metro-area network. However, Viking assumes the traffic matrix is fixed; as time goes by, the input load may gradually deviate from the assumed traffic matrix because of addition/deletion of subscribers and/or changes in bandwidth requirements from existing subscribers. Therefore, dynamic resource management is required to accommodate such traffic load fluctuations. This paper describes the design, implementation and evaluation of an autonomic network resource management system called Viking2 that enables a Metro-Ethernet network to dynamically self-reconfigure itself, with minimal human intervention, to adapt to changing traffic loads. In particular, whenever possible Viking2 uses a local repair approach to eliminate congestion while minimizing the number of flows affected. If local repair cannot fix a congestion problem, Viking2 resorts to a global reconfiguration approach that recomputes a new path for every flow and deploys the new routing state in a way that reduces the disruption during the period of transition to the minimum. Simulation results show that compared with the original Viking, Viking2 can indeed significantly improve a network's ability to dynamically adapt itself to changing traffic loads, to minimize the degree of congestion during normal network operation, and to increase the total effective network capacity.
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多生成树城域以太网的自主资源管理
Viking[13]是一种多扩展树以太网架构,其设计目的是利用商品以太网交换机来支持城域以太网服务。特别是,它利用VLAN交换在城域网络上提供全网范围的负载平衡。然而,维京假设流量矩阵是固定的;随着时间的推移,由于用户的增加/删除和/或现有用户带宽需求的变化,输入负载可能会逐渐偏离假定的流量矩阵。因此,需要动态资源管理来适应这种流量负载波动。本文描述了一个名为Viking2的自主网络资源管理系统的设计、实现和评估,该系统使城域以太网能够在最小的人为干预下动态地自我重新配置,以适应不断变化的流量负载。特别是,只要可能,Viking2使用本地修复方法来消除拥塞,同时最大限度地减少受影响的流量。如果局部修复无法解决拥塞问题,Viking2将采用全局重新配置方法,为每个流量重新计算一条新路径,并以一种将过渡期间的中断减少到最小的方式部署新的路由状态。仿真结果表明,与原有的Viking相比,Viking2确实能够显著提高网络动态适应流量负载变化的能力,最大限度地降低网络正常运行时的拥塞程度,提高网络总有效容量。
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