Electronic equalization of transmission impairments

H. Bulow
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引用次数: 78

Abstract

We have reviewed experimental and numerical results on electrical signal processing for the reduction of penalty induced in the optical domain. Since a few years integrated electronic equalizer circuits are available for 10 Gb/s operation. Penalty reduction of signal distorted by chromatic dispersion, PMD, and self-phase modulation has experimentally been demonstrated. First studies on equalization of DWDM typical crosstalk have already been conducted. Nevertheless, as compared to the decade long experience with dynamic equalization of thermal noise limited signal, for amplified optical signal limited by the optical signal-to-noise-ratio (OSNR) the residual penalty after equalization roughly doubles and the fast responding LMS adaptation leads to a sub-optimum setting of the equalizer failing the optimum by up to 0.8 dB which can be avoided by the slower steepest-descend scheme which optimising Q-factor related criteria at equalizer output.
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传输障碍的电子均衡
本文综述了在减少光域惩罚诱导的电信号处理方面的实验和数值结果。由于几年来集成的电子均衡器电路可用于10gb /s的操作。实验证明了色散、PMD和自相位调制失真信号的惩罚减少。对波分复用典型串扰的均衡进行了初步研究。然而,与热噪声限制信号的动态均衡长达十年的经验相比,对于受光信噪比(OSNR)限制的放大光信号,均衡后的残余惩罚大约翻倍,快速响应的LMS自适应导致均衡器的次优设置达0.8 dB,这可以通过优化均衡器输出q因子相关标准的较慢的最慢下降方案来避免。
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