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On-demand fragmentation-aware spectrum allocation in space division multiplexed elastic optical networks with minimized crosstalk and multipath routing

机译:具有最小化串扰和多径路由的太空分割多路复用弹性光网络中的按需碎片感知频谱分配

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摘要

Elastic optical networks are extremely effective networks for high speed optical communication owing to excessive data rate requirements in future years. Applying the space division multiplexing (SDM) technology with multi-core fibers (MCFs) provides possibility to increase the network capacity and data transmission rate as a consequence. One of the main issues in these types of networks is bandwidth fragmentation due to dynamic spectrum allocation and releasing. Management of this problem would lead to optimal use of network bandwidth. As a result, more connection demands can be accommodated. In this paper, two novel algorithms of multipath routing are presented to improve fragmentation, where both algorithms are fragmentation-aware. The first algorithm, named Fragmentation-aware Best Splits (FABS), exploits fragmentation criteria as well as a new split technique called Best Split. In addition to these features, the second algorithm called Crosstalk-aware Best Split (CABS) considers inter-core crosstalk (XT) which is a significant issue in SDM. By employing these two algorithms and considering distance-adaptive modulation, our performance evaluation results illustrate a remarkable improvement in reducing blocking rate and enhancement of spectrum utilization.
机译:由于未来几年的数据速率要求过多,弹性光网络是高速光学通信的极其有效网络。使用多核光纤(MCFS)应用空间分割复用(SDM)技术提供了增加网络容量和数据传输速率的可能性。由于动态频谱分配和释放,这些类型的网络中这些类型的主要问题之一是带宽分段。管理这个问题将导致网络带宽的最佳使用。结果,可以容纳更多的连接需求。在本文中,提出了两种多径路由算法以改善碎片,其中两个算法都是碎片化。第一算法名为碎片感知最佳分割(Fabs),利用碎片标准以及一种名为最佳分割的新分割技术。除了这些功能之外,还称为Crosstalk-Arep最佳分割(CAB)的第二算法考虑了核心串扰(XT),这是SDM中的一个重要问题。通过采用这两种算法和考虑距离 - 自适应调制,我们的性能评估结果说明了降低阻塞速率和频谱利用增强的显着提高。

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