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Amplifier Placement in Transparent DWDM Ring Networks

机译:透明DWDM环形网络中的放大器放置

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摘要

In high speed DWDM (Dense Wavelength Division Multiplexing) networks, meeting the targeted physical-layer performance is largely dependent on the total number and the placement of the optical amplifiers. An efficient design not only cuts down the network cost by minimizing the required number of amplifiers, but also effectively reduces the undesirable fiber nonlinearities and the end-to-end OSNR (Optical Signal-to-Noise Ratio) degradation on the propagating channels. By capturing major transmission impairments, such as fiber attenuation, nonlinear effects, amplifier and receiver noises, this paper proposes an algorithm for a given static lightpath scenario to find the most efficient solution of the amplifier placement that satisfies the performance constraints. We then adapt this algorithm to the dynamic traffic case. Numerical results show that our algorithm outperforms uniform placement schemes in controlling the nonlinear effects and providing targeted BER performance using the minimum number of amplifiers.
机译:在高速DWDM(密集波分复用)​​网络中,要达到目标物理层性能在很大程度上取决于光放大器的总数和位置。高效的设计不仅可以通过减少所需的放大器数量来减少网络成本,而且还可以有效地减少传播通道上不希望出现的光纤非线性和端到端OSNR(光信噪比)下降。通过捕获主要的传输障碍,例如光纤衰减,非线性效应,放大器和接收器噪声,本文提出了一种针对给定静态光路场景的算法,以找到满足性能约束的最有效的放大器放置解决方案。然后,我们使该算法适应动态交通情况。数值结果表明,在控制非线性效应和使用最少数量的放大器提供目标BER性能方面,我们的算法优于均匀布局方案。

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