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Analysis of link architectures for multiwavelength (N/spl times/10 Gbit/s) transmission in terrestrial networks

机译:地面网络中多波长(N / SPL时/ 10 Gbit / s)传输的链路架构分析

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Wavelength-division multiplexing (WDM) seems to be the most promising approach to achieve large throughput transmission over distances of a few hundred kilometers, and allows for optical networking functionalities. Several WDM transmission experiments over single mode fibre (SMF) were performed that showed very high throughput-distance products. The requirements on the stability of light sources, filters, and other optical components is such that a channel spacing of 200 GHz is emerging as a viable solution. We first investigate numerically the propagation of N/spl times/10 Gbit/s channels over SMF with dispersion management along the link. The channel separation is such that the entire band of fluoride-based EDFAs (EDFFAs), about 25 nm between 1536 and 1560 nm, is used in order to relax the requirements on optical components. The focus is on the impact of the dispersion map on the transmission performance. Finally, the results of a 16/spl times/10 Gbit/s dispersion-managed transmission experiment over more than 500 km of SMF, are compared to the theoretical findings.
机译:波分复用(WDM)似乎是实现在几百公里的距离上实现大量吞吐量传输的最有希望的方法,并且允许光学网络功能。进行单模光纤(SMF)的几个WDM传输实验,显示出非常高的横向距离产物。对光源,滤波器和其他光学元件的稳定性的要求使得200GHz的通道间距作为可行的解决方案。我们首先通过沿着链路的分散管理在数值上进行数字地调查N / SPL时间/ 10 Gbit / s通道的传播。通道分离使得使用氟化物的EDFAS(Edffas)的整个带,约25nm之间,在1536和1560nm之间,以便放宽对光学组件的要求。重点是在分散地图对传输性能的影响。最后,与理论发现相比,在SMF中超过500千米以上的16 / SPL时间/ 10 Gbit / s分散管理实验的结果。

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