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Tridental Resource Assignment Algorithm for Spectrally-Spatially Flexible Optical Networks

机译:用于光谱空间柔性光网络的三叉资源分配算法

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Recent advances in Spectrally-Spatially Flexible Optical Networks (SS-FONs) have enhanced service provisioning by leveraging elastic optical transmission with a fine-grained and flexible frequency grid, multiple spatial modes (fiber cores), and a variety of advanced modulation formats (MFs) to increase the capacity of optical fiber. An important lightpath resource assignment problem in SS-FONs is the routing, modulation, core, and spectrum assignment (RMCSA) problem. Crosstalk (XT) between connections on different cores degrades the quality of transmission, and the RMCSA algorithm must ensure that XT constraints are met while maximizing performance. In this paper, we propose an RMCSA algorithm called Tridental Resource Assignment algorithm (TRA), as it balances network capacity, spectrum utilization and spectrum fragmentation that affect network performance. Our resource assignment approach includes both an offline/static network planning component and an online/dynamic provisioning component. In the former, MFs and spectrum utilization are used to compute path priorities for a lightpath. The dynamic provisioning component then allocates the resources on a selected path using TRA. Extensive simulation experiments performed in realistic network scenarios indicate that TRA significantly reduces the bandwidth blocking probability (BBP) in a variety of scenarios by maintaining a good balance between spectrum utilization and XT.
机译:光谱空间柔性光网络(SS-FONS)的最新进步通过利用具有细粒度和柔性频率网格,多种空间模式(光纤核心)和各种高级调制格式(MFS)来利用弹性光传输来增强服务供应)增加光纤的容量。 SS-FONS中一个重要的LightPath资源分配问题是路由,调制,核心和频谱分配(RMCSA)问题。不同核心的连接之间的串扰(XT)会降低传输质量,RMCSA算法必须确保满足XT约束,同时最大化性能。在本文中,我们提出了一种称为三渡资源分配算法(TRA)的RMCSA算法,因为它平衡了影响网络性能的网络容量,频谱利用率和频谱碎片。我们的资源分配方法包括离线/静态网络规划组件和在线/动态配置组件。在前者中,MFS和Spectrum利用率用于计算LightPath的路径优先级。然后,动态配置组件使用TRA分配所选路径上的资源。在现实网络场景中进行的广泛模拟实验表明,通过在频谱利用率和XT之间保持良好的平衡,TRA在各种场景中显着降低了带宽阻塞概率(BBP)。

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