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Low Margin QoT-Aware RMLSA with Circuit Invigoration in Elastic Optical Networks

机译:带有电路振荡的低裕度QOT感知RMLSA在弹性光网络中进行电路敏感

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In Elastic Optical Networks (EON), the literature usually measures QoT (Quality of Transmission) by the Optical Signal-to-Noise Ratio (OSNR) or estimated maximum transparent reach of the modulation technique adopted by the circuit. This paper evaluates the Quality of Transmission (QoT) margins adopted in traditional Routing, Modulation Level, and Spectrum Assignment (RMLSA) algorithms that quantify QoT through the maximum transparent reach of the modulation techniques. A RMLSA algorithm is proposed that categorizes the minimum margins that must be adopted for the establishment of new circuits, based on their expected degeneration and the impact it will have on the already established optical circuits. Simulation results show that the proposed minimum margins associated with circuit invigoration present better results than algorithms that propose a fairer margin or evaluate QoT through the maximum transparent reach. The proposal showed a reduction of up to 89% of bandwidth blocking rate and with a runtime performance similar to the simpler algorithms that evaluate QoT by distance.
机译:在弹性光网络(EON)中,文献通常通过光学信噪比(OSNR)或电路采用的调制技术的估计最大透明范围来测量QOT(传输质量)。本文评估了传统路由,调制级别和​​频谱分配(RMLSA)算法中采用的传输质量(QOT)边距,这些算法通过调制技术的最大透明范围来量化QOT。提出了一种RMLSA算法,根据其预期的退化和它在已经建立的光电路上的影响,对建立新电路必须采用的最小边值进行分类。仿真结果表明,与电路敏感相关的提出的最小边值呈现出比提出更公平的余量或通过最大透明范围评估QOT的算法的良好结果。该提议表明,带宽阻塞速率的降低高达89%,并且运行时性能类似于通过距离评估QoT的更简单算法。

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