基于物理约束和非对称用户聚类的UDWDM-PON部署优化模型

G. Arévalo, R. Hincapié, J. Sierra
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引用次数: 1

摘要

UDWDM PON是一项领先的技术,旨在为最终用户提供超高带宽,同时利用物理信道的能力。UDWDM技术的一个主要缺点是,由于信道之间的频谱接近,非线性效应与FWM一样变得更强。考虑到光纤数据传输的物理限制所施加的光纤长度限制以及用户在给定区域内的不对称分布,本工作提出了这种类型网络的最佳部署模型。该模型采用了UDWDM PON中数据传输的相关影响作为优化问题的约束条件,并考虑了用户的非对称聚类和用户区域的Voronoi几何划分技术。这里考虑de Voronoi对偶图,即Delaunay三角剖分,作为解决光纤链路最小权值问题的平面图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization model for UDWDM-PON deployment based on physical restrictions and asymmetric user's clustering
UDWDM PON is a leading technology oriented to provide ultra-high bandwidth to final users while profiting the physical channels' capability. One of the main drawbacks of UDWDM technique is the fact that the nonlinear effects, like FWM, become stronger due to the close spectral proximity among channels. This work proposes a model for the optimal deployment of this type of networks taking into account the fiber length limitations imposed by physical restrictions related with the fiber's data transmission as well as the users' asymmetric distribution in a provided region. The proposed model employs the data transmission related effects in UDWDM PON as restrictions in the optimization problem and also considers the user's asymmetric clustering and the subdivision of the users region though a Voronoi geometric partition technique. Here it is considered de Voronoi dual graph, it is the Delaunay Triangulation, as the planar graph for resolving the problem related with the minimum weight of the fiber links.
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