具有相干检测的高比特率地面传输系统的系统设计工具

Q1 Engineering
Bruno Lavigne;Mathieu Lefrançois;Elodie Balmefrezol;Christine Bresson;Francesco Vacondio;Jean-Christophe Antona;Emmanuel Seve;Olivier Rival
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引用次数: 21

摘要

相干检测提供了补偿线性传输损伤的能力,如数字域中的光纤色散和偏振模色散,从而实现了高性能和高成本效益的色散无补偿光传输。在色散无补偿传输系统中,光学非线性引起的失真的统计数据已被证明基本上是高斯分布的,并且出现了新的物理模型,显示出与基于直接检测的传统系统的深刻差异。由于这些差异,需要调整设计工具来捕捉这些新的传播特性。在这方面,我们提出了一个性能预测模型,用于推导一个简单而有效的可行性参数,该参数将嵌入设计工具中。利用实时产品转发器和真实的系统配置对可行性参数进行了实验验证:40 Gb/s、100 Gb/s和400 Gb/s相干信道的精度达到±0.5 dB,这比使用非线性相移作为标准的设计工具提高了3 dB以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System design tool for high bit rate terrestrial transmission systems with coherent detection
Coherent detection offers the ability to compensate for linear transmission impairments such as fiber chromatic dispersion and polarization-mode dispersion in the digital domain, thereby enabling dispersion-uncompensated optical transmission for high performance and high cost effectiveness. In dispersion-uncompensated transmission systems, the statistics of optical nonlinearity induced distortions have been proven to be essentially Gaussian-distributed, and new physical models have emerged showing profound differences with respect to legacy systems based on direct detection. From such differences stems the need to adapt the design tool to capture these new propagation properties. In that respect, we propose a model for performance prediction, which is used to derive a simple yet effective feasibility parameter to be embedded in the design tool. The feasibility parameter is experimentally validated with real time product transponders, and realistic system configurations: a precision of ±0.5 dB is achieved for 40 Gb/s, 100 Gb/s and 400 Gb/s coherent channels, which represents an improvement of more than 3 dB over the design tool using the nonlinear phase shift as the criterion.
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来源期刊
Bell Labs Technical Journal
Bell Labs Technical Journal 工程技术-电信学
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: The Bell Labs Technical Journal (BLTJ) highlights key research and development activities across Alcatel-Lucent — within Bell Labs, within the company’s CTO organizations, and in cross-functional projects and initiatives. It publishes papers and letters by Alcatel-Lucent researchers, scientists, and engineers and co-authors affiliated with universities, government and corporate research labs, and customer companies. Its aim is to promote progress in communications fields worldwide; Bell Labs innovations enable Alcatel-Lucent to deliver leading products, solutions, and services that meet customers’ mission critical needs.
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