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Modeling the routing and spectrum allocation problem for flexgrid optical networks

机译:建模柔性网格光网络的路由和频谱分配问题

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Flexgrid optical networks are attracting huge interest due to their higher spectrum efficiency and flexibility in comparison with traditional wavelength switched optical networks based on the wavelength division multiplexing technology. To properly analyze, design, plan, and operate flexible and elastic networks, efficient methods are required for the routing and spectrum allocation (RSA) problem. Specifically, the allocated spectral resources must be, in absence of spectrum converters, the same along the links in the route (the continuity constraint) and contiguous in the spectrum (the contiguity constraint). In light of the fact that the contiguity constraint adds huge complexity to the RSA problem, we introduce the concept of channels for the representation of contiguous spectral resources. In this paper, we show that the use of a pre-computed set of channels allows considerably reducing the problem complexity. In our study, we address an off-line RSA problem in which enough spectrum needs to be allocated for each demand of a given traffic matrix. To this end, we present novel integer lineal programming (ILP) formulations of RSA that are based on the assignment of channels. The evaluation results reveal that the proposed approach allows solving the RSA problem much more efficiently than previously proposed ILP-based methods and it can be applied even for realistic problem instances, contrary to previous ILP formulations.
机译:与基于波分复用技术的传统波长交换光网络相比,Flexgrid光网络具有更高的频谱效率和灵活性,因此引起了极大的兴趣。为了正确地分析,设计,规划和运行灵活而有弹性的网络,路由和频谱分配(RSA)问题需要有效的方法。具体而言,在没有频谱转换器的情况下,所分配的频谱资源必须沿着路径中的链路相同(连续性约束),并且在频谱中连续(连续性约束)。鉴于连续性约束给RSA问题增加了极大的复杂性,我们引入了用于表示连续频谱资源的信道概念。在本文中,我们表明使用一组预先计算的通道可以大大降低问题的复杂性。在我们的研究中,我们解决了离线RSA问题,其中需要为给定流量矩阵的每个需求分配足够的频谱。为此,我们提出了基于通道分配的RSA新颖的整数线性规划(ILP)公式。评估结果表明,与先前提出的基于ILP的方法相比,所提出的方法可以更有效地解决RSA问题,并且与以前的ILP公式相反,它甚至可以用于实际的问题实例。

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