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Multiple Core Fibers versus Multiple Fibers Enabled Space Division Multiplexing Based Elastic Optical Networks: A Performance Comparison

机译:多芯光纤与多芯空分复用弹性光网络的性能比较

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Space Division Multiplexing (SDM) based Elastic Optical Networks (EONs) (SDM-b-EONs) have been envisioned as a solution to both, the required upgradation of the single-mode fiber’s network capacity which is constrained by the non-linear Shannon’s limit and the capacity provisioning which will be necessitated by future diverse Internet traffic. The current SDM-b-EON designs are based on the use of Multiple Fibers (MF) technology; however, recently the Multiple Core Fiber (MCF) technology has gained momentum after laboratory experiments conducted on the MCF models established much lower inter-core crosstalk values. In the current work, we focus on the design of a MCF enabled SDM-b-EON for which, we formulate an Integer Linear Programming (ILP) model and then propose a heuristic algorithm to obtain the solutions for large sized networks in reasonable execution times. We then proceed to the performance comparison of the MCF and the MF enabled SDM-b-EON under the consideration of realistic parameters and network topologies which are characterized by different node(s) numbers and link distances. The obtained results demonstrate that the performance of the MCF enabled SDM-b-EON is very close to that of a MF enabled SDM-b-EON which implies that the network operators can benefit by utilizing the existing components for the MCFs rather than incurring any extra expense to provision the same traffic amount.
机译:已经设想了基于空分复用(SDM)的弹性光网络(EON)(SDM-b-EON)作为对这两种解决方案的解决方案,单模光纤的网络容量需要升级,并受非线性Shannon限制的约束以及未来多样化的Internet流量将需要的容量配置。当前的SDM-b-EON设计基于多光纤(MF)技术的使用。然而,最近在对MCF模型进行的实验室实验确定了较低的芯间串扰值之后,多芯光纤(MCF)技术得到了发展。在当前的工作中,我们专注于启用MCF的SDM-b-EON的设计,为此,我们制定了整数线性规划(ILP)模型,然后提出了一种启发式算法,以在合理的执行时间内获得大型网络的解决方案。 。然后,我们在考虑实际参数和网络拓扑的情况下,对MCF和启用MF的SDM-b-EON进行性能比较,这些参数和网络拓扑以不同的节点数和链接距离为特征。获得的结果表明,启用了MCF的SDM-b-EON的性能非常接近启用了MF的SDM-b-EON的性能,这意味着网络运营商可以通过将现有组件用于MCF而受益,而不会招致任何损失。提供相同流量的额外费用。

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