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Adaptive Electronic Dispersion Compensator for Chromatic and Polarization-Mode Dispersions in Optical Communication Systems

机译:用于光通信系统中色度和偏振模色散的自适应电子色散补偿器

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The widely-used LMS algorithm for coefficient updates in adaptive (feedforward/decision-feedback) equalizers is found to be suboptimal for ASE-dominant systems but various coefficient-dithering approaches suffer from slow adaptation rate without guarantee of convergence. In view of the non-Gaussian nature of optical noise after the square-law optoelectronic conversion, we propose to apply the higher-order least-mean 2 th-order (LMN) algorithms resulting in OSNR penalty which is 1.5–2 dB less than that of LMS. Furthermore, combined with adjustable slicer threshold control, the proposed equalizer structures are demonstrated through extensive Monte Carlo simulations to achieve better performance.
机译:发现在自适应(前馈/决策反馈)均衡器中用于系数更新的广泛使用的LMS算法对于以ASE为主导的系统次优,但各种系数抖动方法的适应速度较慢,无法保证收敛。考虑到平方律光电转换后光噪声的非高斯性质,我们建议应用高阶最小均值2阶(LMN)算法,从而导致OSNR损失比传统方法少1.5–2 dB。 LMS的。此外,结合可调节的限幅器阈值控制,通过广泛的蒙特卡洛仿真演示了所提出的均衡器结构,以实现更好的性能。

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