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Traffic engineering in multigranularity heterogeneous optical WDM mesh networks through dynamic traffic grooming

机译:通过动态流量疏导在多粒度异构WDM网状网络中进行流量工程

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In this article we investigate the problem of efficiently provisioning connections of different bandwidth granularities in a heterogeneous WDM mesh network through dynamic traffic grooming schemes under traffic engineering principles. Due to the huge amount of traffic a WDM backbone network can support and the large geographic area it can cover, constructing and upgrading such an optical WDM network can be costly. Hence, it is extremely important for network operators to apply traffic engineering strategies to cost-effectively support different bandwidth granularity services using only the appropriate amount of network resources. This requires an optical WDM network to have multigranularity switching capability, and such a network tends to be a multivendor heterogeneous network. However, WDM network heterogeneity increases the difficulty and challenge of efficient traffic provisioning. In this article we present different TE issues that need to be carefully considered in such an optical WDM network, and propose possible solutions and extensions for the generalized multiprotocol label switching optical network control plane. We extend an existing generic graph model to perform efficient traffic grooming and achieve different TE objectives through simple shortest path computation algorithms. We show that our approach is very practical and very suitable for traffic engineering in a heterogeneous multigranularity optical WDM mesh network.
机译:在本文中,我们研究了根据流量工程原理,通过动态流量疏导方案在异构WDM网状网络中有效地配置不同带宽粒度的连接的问题。由于WDM骨干网可以支持的流量巨大,而且它可以覆盖的地理区域很大,因此构建和升级此类光学WDM网络的成本可能很高。因此,对于网络运营商而言,应用流量工程策略以仅使用适当数量的网络资源来经济有效地支持不同的带宽粒度服务就显得尤为重要。这要求光学WDM网络具有多粒度交换功能,并且这种网络往往是多厂商异构网络。但是,WDM网络的异构性增加了有效流量配置的难度和挑战。在本文中,我们提出了在这样的WDM网络中需要仔细考虑的各种TE问题,并提出了针对通用多协议标签交换光网络控制平面的可能解决方案和扩展。我们扩展了现有的通用图模型,以执行有效的流量疏导,并通过简单的最短路径计算算法实现不同的TE目标。我们表明,我们的方法非常实用,非常适合异构多粒度光学WDM网状网络中的流量工程。

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