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LERP: a Quality of Transmission Dependent Heuristic for Routing and Wavelength Assignment in Hybrid WDM Networks

机译:LERP:混合WDM网络中的路由和波长分配的传输依赖启发式的质量

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Over the last decade, numerous Routing and Wavelength Assignment (RWA) algorithms have been developed for WDM optical networks planning. Most of these algorithms neglect the feasibility of the obtained lightpaths. In this paper, we propose a new algorithm, called LERP (Lightpath Establishment with Regenerator Placement), that enables to solve the problem of RWA in guaranteeing the feasibility of the obtained solution. A lightpath is said admissible if the BER (Bit Error Rate) at its destination node remains acceptable (remains under a given threshold). In the case of BER non-admissibility, one or more electrical regenerators may be placed along the lightpath. The LERP algorithm aims at minimizing the number of regenerators necessary to guarantee the quality of transmission along the lightpath. The originality of the our approach consists in considering simultaneously four physical layer impairments, namely, chromatic dispersion, polarization mode dispersion, amplified spontaneous emission and non-linear phase shift. The efficiency of the LERP algorithm is demonstrated via a numerical comparison with one of the alternative solutions proposed in the literature. Numerical simulations have been carried out in the context of the 18-node NSF network.
机译:在过去的十年中,已经为WDM光网络规划开发了许多路由和波长分配(RWA)算法。这些算法中的大多数忽略了所获得的光路的可行性。在本文中,我们提出了一种新的算法,称为LERP(具有再生器放置的LIGHPATH建立),这使得能够解决RWA的问题,以保证所获得的解决方案的可行性。如果在其目标节点处的BER(误码率)仍然可接受(保留在给定阈值下),则可以通过LIGHTPATH表示。在BER不可受理的情况下,可以沿着光路放置一个或多个电再生器。 LERP算法旨在最大限度地减少保证沿着光路的传输质量所需的再生器的数量。我们方法的原创性包括同时考虑四个物理层损伤,即色散,偏振模式色散,扩增的自发发射和非线性相移。通过与文献中提出的替代解决方案之一的数值比较来证明LERP算法的效率。已经在18节点NSF网络的上下文中执行了数值模拟。

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