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Switching adaptable optimization of resource allocation for space division multiplexed elastic optical networks

机译:空分复用弹性光网络中资源分配的交换适应性优化

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摘要

Space division multiplexed-elastic optical networking (SDM-EON) is considered as the promising solution to overcome the capacity crunch of optical transport networks. The resource allocation problem of SDM-EON includes the route, modulation level, space, and spectrum assignment (RMLSSA). In this paper, we first investigate the effect of fiber types, switching solutions, and networking approaches on the resource allocation problem of SDM-EON, and try to consider comprehensive all-inclusive constraints. Then, a new generic formulation of switching adaptable (SA)-RMLSSA is proposed as an integer linear programing (ILP) for static traffic, based on these comprehensive constraints. In addition, the heuristic switching adaptable resource allocation (SARA) algorithm is introduced. Finally, the paper evaluates the effectiveness of SARA, with two sorting policies of connection demands, to find the near-optimal solution of different networking approaches. This evaluation is performed for parallel spectral superchannel (PS-Ch), limited spatial-spectral superchannel (LS2-Ch), group limited spatial-spectral superchannel (GLS2-Ch), and free spatial-spectral superchannel (FS2-Ch) switchings (with both ribbon and ring configurations of multi-core fibers (MCF), and having or not having spatial guardband) with operational assumptions in regard to the quality of transmission (related to the used fiber type) and traffic profile. The effect of each networking approach, having modulation adaptivity tailored for each fiber type, enabling spatial guardbands for MCFs, and cores configurations are investigated by maximum utilized frequency slot index (MUFSI) and demand utilization ratio (DUR) as metrics of static traffic. Moreover, the use of SARA for dynamic traffic is investigated for real network experiment.
机译:空分复用弹性光网络(SDM-EON)被认为是克服光传输网络容量不足的有希望的解决方案。 SDM-EON的资源分配问题包括路由,调制级别,空间和频谱分配(RMLSSA)。在本文中,我们首先研究光纤类型,交换解决方案和网络方法对SDM-EON的资源分配问题的影响,并尝试考虑全面的包容性约束。然后,基于这些综合约束条件,提出了一种针对静态流量的交换自适应(SA)-RMLSSA的新通用公式,作为整数线性规划(ILP)。此外,还介绍了启发式切换自适应资源分配(SARA)算法。最后,本文通过两种连接需求的排序策略评估了SARA的有效性,以找到不同组网方法的最佳解决方案。此评估是针对并行频谱超级通道(PS-Ch),受限空间光谱超级通道(LS2-Ch),组受限空间光谱超级通道(GLS2-Ch)和自由空间光谱超级通道(FS2-Ch)切换(具有多芯光纤(MCF)的带状和环形配置,并且具有或不具有空间保护带),并具有有关传输质量(与使用的光纤类型有关)和流量分布的操作假设。每种联网方法的效果均具有针对每种光纤类型量身定制的调制适应性,可为MCF提供空间保护带,并通过最大利用频率时隙指数(MUFSI)和需求利用率(DUR)作为静态流量的指标来研究核心配置。此外,还针对实际网络实验研究了SARA在动态流量中的使用。

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  • 来源
    《Optical Switching and Networking》 |2019年第1期|8-21|共14页
  • 作者单位

    Computer Networks Research Lab, Department of Electrical Engineering, Sahand University of Technology;

    Computer Networks Research Lab, Department of Electrical Engineering, Sahand University of Technology;

    Department of Science, Sahand University of Technology;

    Computer Networks Research Lab, Department of Electrical Engineering, Sahand University of Technology;

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