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Online service provisioning in elastic optical networks with hybrid algorithm for congestion aware routing and spectrum allocation

机译:弹性光网络中具有混合算法的在线服务供应,可用于拥塞感知路由和频谱分配

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Elastic optical networks (EON) has received intensive research attraction due to its agile spectrum management in the underlying optical backbone infrastructure whose channels can be allocated on variable spectrum width. In this paper, a hybrid scheme is proposed for routing and spectrum allocation (RSA) in EON. An optimization formulation is modeled which takes into account the elastic bandwidth characteristics of optical paths as well as maintains a threshold congestion level on all links. The goal of the proposed model is to minimize the cost of using the network links which results in the minimum cost paths between node pairs. The proposed optimization model is solved offline in the initial stage to obtain routing information which is utilized for online traffic in the second stage. The proposed model is integrated with the spectrum allocation subproblem with the continuity and contiguity constraints. The computational time of the optimization model is shown to be in (time unit) seconds for different networks which is an acceptable time to obtain routing information in the initial stage. The proposed RSA scheme helps to efficiently reduce network blocking probabilities in different network scenarios as the optimization model manages to route traffic load to the underutilized links when the quality of service of lightpaths on the overutilized links meet the desired threshold congestion level.
机译:弹性光网络(EON)由于其在底层光骨干基础架构中的敏捷频谱管理而受到了广泛的研究兴趣,该基础架构的光骨干基础架构的信道可以在可变频谱宽度上分配。本文提出了一种混合方案,用于EON中的路由和频谱分配(RSA)。对优化公式进行建模,该公式考虑到光路的弹性带宽特性,并在所有链路上保持阈值拥塞水平。所提出的模型的目的是使使用网络链路的成本最小化,这导致节点对之间的最小成本路径。所提出的优化模型在初始阶段离线解决,以获得路由信息,第二阶段将其用于在线流量。所提出的模型与具有连续性和连续性约束的频谱分配子问题集成在一起。对于不同的网络,优化模型的计算时间显示为(时间单位)秒,这是在初始阶段获得路由信息的可接受时间。当过度使用的链路上的光路的服务质量满足所需的阈值拥塞水平时,优化模型设法将流量负载路由到未充分利用的链路,因此,所提出的RSA方案有助于有效减少不同网络情况下的网络阻塞概率。

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