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Multiple Fiber, Flexgrid Elastic Optical Network Design Using MaxEnt Optimization
DOI:10.1364/JOCN.7.00B194.png)
摘要
En 中文
We demonstrate how maximum entropy (MaxEnt) allocation strategies can optimally determine links within a flexgrid elastic optical network, thus requiring multiple fiber pairs to support 100% capacity growth with 34.3% improvement in the uniformity of spectrum allocations. We show how adding additional fiber to those links, which feature the highest number of demands in a link, allows optimum allocation of network capacity resources to all source-destination (S-D) demand pairs and maximizes the available spectral capacity to each demand. We also analyze the case of adding additional fiber to a link in order to reduce the number of contiguous demands present in the associated fiber, as an additional means to maximize the allowable channel capacity for each S-D demand.
Keyword:
Entropy
Networking
Optical communications
Routing
期刊
IF:
4.3
论文数:
2.2K
被引数:
3.8K
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引用论文
Dynamic and Adaptive Bandwidth Defragmentation in Spectrum-Sliced Elastic Optical Networks With Time-Varying Traffic具有时变流量的频谱切片弹性光网络中的动态和自适应带宽碎片整理
Minimum- and Maximum-Entropy Routing and Spectrum Assignment for Flexgrid Elastic Optical Networking
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