Electronic dispersion compensation for PMD in 40-GB/s optical links

Kang Yang, Jianfei Liu, Xiangye Zeng
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引用次数: 1

Abstract

In 40-Gb/s optical systems, it is impossible to neglect the electronic dispersion of polarization-mode dispersion (PMD). As the data rate is increased, the maximum useful length of the fiber decreases according to the square of the increase. With the development of VLSI and DSP technologies, the electronic dispersion compensation for optical network has aroused greater world attention. In this paper, the performance of decision feedback equalizer (DFE) in PMD-limited 40-GB/s optical links is analyzed by using Matlab/Simulink. A simple equalizer circuit, in fold-cascade traveling-wave filter topology, is presented and the results based on S-parameter simulations show that a DFE equalizer consisting of a 3-tap feed forward equalizer (FFE) and a 2-tap feed back equalizer (FBE) can mitigate PMD effectively.
40gb /s光链路中PMD的电子色散补偿
在40gb /s光学系统中,偏振模色散(PMD)的电子色散是不可忽视的。随着数据速率的增加,光纤的最大有效长度按增加的平方减小。随着超大规模集成电路(VLSI)和数字信号处理(DSP)技术的发展,光网络的电子色散补偿问题引起了越来越多的关注。本文利用Matlab/Simulink对pmd受限的40gb /s光链路中决策反馈均衡器(DFE)的性能进行了分析。提出了一种简单的折叠级联行波滤波器拓扑均衡器电路,s参数仿真结果表明,由3分路前馈均衡器(FFE)和2分路反馈均衡器(FBE)组成的DFE均衡器可以有效地缓解PMD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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