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Space-Frequency Joint Contention Scheduling Algorithm based on AoD in SDM-EONs

机译:基于AOD的SDM-eons的空间频率联合争用调度算法

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Compared with elastic optical networks, spectrum contention problem may become more serious in space-division multiplexing elastic optical networks. Spectrum converters (SCs) can effectively resolve the problem of spectrum contention without additional delays, but SCs have the disadvantages of complicated technologies and high costs. To resolve the two problems aforesaid, taking into account the alleviated spectrum continuity constraint caused by the space dimension and the node flexibility introduced by architecture on demand (AoD), a space-frequency joint contention scheduling algorithm (SFJSA) based on AoD is proposed in this paper. SFJSA divides the contention scheduling process into two phases: scheduling in space domain and in frequency domain. It gives priority to resolve contention in the spatial domain, and then considers using spectrum converters in spectrum domain. In the stage of space switching, a weight formula is designed to balance the costs of spectrum selective switches and the loads of cores. In the stage of spectrum conversion, a concept of spectrum compactness is introduced to further optimize the utilization of spectrum resources and spectrum converters. The simulation results indicate that the proposed algorithm can reduce the number of spectrum converters required while improving the blocking performance, which means it achieves better blocking performance in a more cost-effective manner.
机译:与弹性光网络相比,空隙复用弹性光网络中的频谱竞争问题可能变得更加严重。频谱转换器(SCS)可以有效地解决频谱争用问题而无需额外的延迟,但SC具有复杂技术和高成本的缺点。要解决上述两个问题,考虑到由空间尺寸和架构引入的节点灵活性(AOD)引起的缓解频谱连续性约束,提出了一种基于AOD的空间联合争用调度算法(SFJSA)这篇报告。 SFJSA将争用调度过程划分为两个阶段:在空间域和频域中调度。它优先解决空间域中的争用,然后在频谱域中使用频谱转换器进行考虑。在空间切换阶段,重量配方旨在平衡光谱选择性开关的成本和核心的负载。在频谱转换阶段,引入了频谱紧凑性的概念,以进一步优化频谱资源和频谱转换器的利用。仿真结果表明,所提出的算法可以减少改进阻塞性能的频谱转换器的数量,这意味着它以更具成本效益的方式实现更好的阻挡性能。

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