Impairment-aware lightpath provisioning in mixed line rate networks

H. Çukurtepe, M. Tornatore, Aysegul Yayimli, B. Mukherjee
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引用次数: 6

Abstract

In mixed line rate (MLR) networks, different line rates can coexist on the same fiber, on different wavelengths. Each lightpath can be established end-to-end, with requested line rate. Advanced modulation techniques are required for high line rates. Signals being propagated over transparent paths are exposed to detrimental effects of physical layer impairments (PLI). Advanced modulation techniques are more susceptible to impairments, especially to the cross-phase modulation (XPM) induced by intensity-modulated channels. In this study, we investigate the impairment-aware lightpath provisioning problem for MLR networks. We consider a transparent optical network where we aim to maximize the number of established connections, while avoiding disruption of existing lightpaths. We propose a weighted approach for impairment-aware lightpath provisioning in MLR networks. We employ an auxiliary graph to capture the PLIs on differently modulated channels with a weight assignment scheme. Simulation results show that the performance of our approach is noteworthy, in terms of blocking probability, bandwidth blocking ratio, and resource consumption.
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混合线路速率网络中损伤感知光路配置
在混合线速率(MLR)网络中,不同的线速率可以在同一光纤、不同波长上共存。每个光路可以建立端到端,与要求的线路速率。高线路速率需要先进的调制技术。通过透明路径传播的信号暴露于物理层损伤(PLI)的有害影响。先进的调制技术更容易受到损伤,特别是由强度调制信道引起的交叉相位调制(XPM)。在本研究中,我们研究了MLR网络的损伤感知光路配置问题。我们考虑一个透明的光网络,我们的目标是最大限度地增加已建立的连接数量,同时避免破坏现有的光路。我们提出了一种加权的MLR网络损伤感知光路配置方法。我们使用辅助图来捕获不同调制信道上的pli与权重分配方案。仿真结果表明,我们的方法在阻塞概率、带宽阻塞率和资源消耗方面的性能是值得注意的。
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