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Space continuity constraint in dynamic Flex-Grid/SDM optical core networks: An evaluation with spatial and spectral super-channels

机译:动态Flex-Grid / SDM光核心网络中的空间连续性约束:具有空间和频谱超级通道的评估

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摘要

Space Division Multiplexing (SDM) appears as a promising solution to overcome the capacity limits of single mode optical fibers. In Flex-Grid/SDM optical networks, nodes offering full interconnection between input/ output fiber ports and spatial channels, typical SDM-Reconfigurable Optical Add/Drop Multiplexer (SDMROADM) referred to as independent switching with lane support (InS with LC support), require very complex and expensive node architectures. Alternative designs have been proposed to relax their requirements, such as those realizing Joint-switching (JoS) by switching one spectrum slice across all spatial channels at once. In this work, we evaluate the benefits of a cost-effective SDM-ROADM architecture that makes a trade-off between (i) performance in terms of network throughput and (ii) architectural complexity by forcing the Space Continuity Constraint (SCC) end-to-end, that is, along the connection physical path. The performance and architectural complexity of such a SDM-ROADM solution are compared in dynamic Flex-Grid/SDM scenarios against benchmark networks based on InS with LC support and JoS SDM-ROADMs, under both spatial and spectral super-channels. We quantify the network throughput when scaling the spatial multiplicity from 7 to 30 spatial channels, considering Multi-Fiber (MF) as well as Multi-Core Fiber (MCF) SDM solutions. The obtained results reveal that differences in terms of network throughput employing InS without LC support SDM-ROADMs is merely up to 14% lower than InS with LC support SDM-ROADMs, while the network CAPEX can be dramatically reduced by 86%. In contrast, networks employing InS without LC support SDM-ROADMs carry up to 40% higher throughput than JoS ones, whereas the network CAPEX can be raised up to 3 x. This paper also analyses the spatial multiplicity impact on both network metrics (throughput and CAPEX).
机译:空分复用(SDM)似乎是克服单模光纤容量限制的有前途的解决方案。在Flex-Grid / SDM光网络中,提供输入/输出光纤端口和空间通道之间完全互连的节点,典型的SDM可重配置光分插复用器(SDMROADM)被称为带通道支持的独立交换(具有LC支持的InS),需要非常复杂且昂贵的节点体系结构。已经提出了替代设计以放宽它们的要求,例如那些通过在所有空间信道上一次转换一个频谱切片来实现联合转换(JoS)的设计。在这项工作中,我们评估了具有成本效益的SDM-ROADM架构的优势,该架构在(i)网络吞吐量方面的性能与(ii)通过强制实施空间连续性约束(SCC)端来在架构复杂性之间进行权衡端,即沿着连接物理路径。在动态Flex-Grid / SDM方案中,将这种SDM-ROADM解决方案的性能和体系结构复杂性与空间和频谱超级通道下基于LC支持的InS和JoS SDM-ROADM的基准网络与基准网络进行了比较。考虑到多光纤(MF)以及多芯光纤(MCF)SDM解决方案,在将空间多样性从7个空间信道扩展到30个空间信道时,我们会量化网络吞吐量。获得的结果表明,使用不支持LC的SDM-ROADM的InS在网络吞吐量方面的差异仅比支持不支持LC的SDM-ROADM的InS低14%,而网络CAPEX则可以大幅度降低86%。相比之下,采用InS且不支持LC的网络,SDM-ROADM的吞吐量比JoS的吞吐量高40%,而网络CAPEX可以提高3倍。本文还分析了空间多样性对两个网络指标(吞吐量和CAPEX)的影响。

著录项

  • 来源
    《Computer Communications》 |2018年第8期|38-49|共12页
  • 作者单位

    Univ Politecn Cataluna, Adv Broadband Commun Ctr CCABA, Jordi Girona 1-3, ES-08034 Barcelona, Spain;

    Univ Politecn Cartagena UPCT, Plaza Hosp 1, Cartagena 30202, Spain;

    Univ Politecn Cataluna, Adv Broadband Commun Ctr CCABA, Jordi Girona 1-3, ES-08034 Barcelona, Spain;

    Univ Politecn Cartagena UPCT, Plaza Hosp 1, Cartagena 30202, Spain;

    Univ Politecn Cataluna, Adv Broadband Commun Ctr CCABA, Jordi Girona 1-3, ES-08034 Barcelona, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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