Characterization of Four Wave Mixing Effect in Dense Wavelength Division Multiplexing Systems

F. E. Durak, Ş. A. Sadık, K. Boumediene, M. Khelladi, A. Altuncu
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引用次数: 3

Abstract

This study presents the characterization of four wave mixing (FWM) effect in dense wavelength division multiplexing (DWDM) systems with two different types of optical fibers which are standard single mode fiber (S-SMF, G.652.D) and nonzero dispersion shifted fiber (NZDSF, G.655.C), respectively. The experimental observation of FWM effect at the received signal spectrum have shown that the increase in channel spacing reduces the power of FWM tone signals. Also, we have compared FWM penalty of DWDM signals transmitted in S-SMF and NZDSF by calculating FWM efficiency affected by the channel spacing. It was shown that when the channel spacing is smaller than 0.5 nm, the FWM efficiency in NZDSF is almost 15 dB higher than the FWM efficiency obtained in S-SMF. Moreover, the results have shown that for 10, 20, 30 km of NZDSF, the FWM efficiency tends to increase with optical fiber length.
密集波分复用系统中四波混频效应的表征
采用标准单模光纤(S-SMF, G.652.D)和非零色散位移光纤(NZDSF, G.655.C)两种不同类型的光纤,研究了密集波分复用(DWDM)系统中的四波混频(FWM)效应。在接收信号频谱上对频混效应的实验观察表明,信道间距的增大会降低频混音信号的功率。通过计算信道间距对频分效率的影响,比较了在S-SMF和NZDSF中传输的DWDM信号的频分干扰。结果表明,当通道间距小于0.5 nm时,NZDSF的FWM效率比S-SMF的FWM效率高出近15 dB。此外,结果表明,对于10、20、30 km的NZDSF, FWM效率随光纤长度的增加而增加。
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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