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Coherent detection associated with digital signal processing for fiber optics communication

机译:与用于光纤通信的数字信号处理相关的相干检测

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Optical transmission systems have seen their performance (system capacity and system reach) drastically improved in the last 15 years by using new technologies such as wide band optical amplification, wavelength division multiplexing, (WDM), dispersion management, introduction of 10 Gbit/s channel rate and now 40 Gbit/s, Differential Phase Shift Keying (DPSK) modulation.... In order to further increase system capacity while relaxing the constraints associated with higher channel rate (i.e. 100 Gbit/s), file association of multilevel modulation format with coherent detection and digital signal processing appears as a key enabler. This article describes the actual modulation and detection methods in order to explain how a coherent receiver including digital signal processing works. The efficiency of coherent receiver to compensate for linear distortions induced by fiber optic propagation will also be detailed. The promising association of coherent receiver with multilevel modulation format, especially For 100 Gbit/s channel rate will be described. Eventually, the limitations of optical communication systems relying on coherent detection will be explained. To cite this article: G. Charlet, C R. Physique 9 (2008).
机译:在过去的15年中,通过使用诸如宽带光放大,波分复用(WDM),色散管理,引入10 Gbit / s信道等新技术,光传输系统的性能(系统容量和系统覆盖范围)得到了显着提高。速率和现在的40 Gbit / s,差分相移键控(DPSK)调制....为了进一步增加系统容量,同时放宽与更高信道速率(即100 Gbit / s)相关的约束,多级调制格式的文件关联具有相干检测和数字信号处理的功能成为关键推动力。本文介绍了实际的调制和检测方法,以说明包括数字信号处理的相干接收机如何工作。相干接收器补偿由光纤传播引起的线性失真的效率也将详细介绍。将描述相干接收机与多级调制格式的有希望的关联,尤其是对于100 Gbit / s的信道速率。最终,将解释依赖于相干检测的光通信系统的局限性。引用本文:G. Charlet,C R. Physique 9(2008)。

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