DWDM光纤通信系统中内联模块中FRFT交替结构

S. Sharath Chandra, P. Sahu
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引用次数: 0

摘要

密集波分复用(DWDM)光纤通信系统由多个信道组成,每个信道都有一个不同波长的光载波信号。DWDM系统的设计是为了使数据传输长度乘积最大化。通过减少信道之间的间隔来容纳更多要复用的信道数量,从而增加系统的带宽或数据量。由此产生的载波波长之间的窄间隔在通信信道中引入了线性和非线性畸变。在光域中实现了一个内联模块,以减轻线性和非线性畸变。该模块设计基于分数阶傅立叶变换(FRFT)。FRFT在光信号上的应用使其转化为一个中间域,在这个中间域中,线性和非线性畸变的影响结合在一起。我们提出了FRFT实现的另一种结构。所提出的结构在变换后应保留光信号的原始轮廓。对该模块进行了CS-RZ调制技术测试。结果表明,内联模块增强了通道的性能参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alternate FRFT structure in inline module in DWDM fiber optic communication system
Dense Wavelength-Division Multiplexing (DWDM) fiber optic communication system consists of multiple channels, each having a light carrier signal placed at distinct wavelengths. A DWDM system is designed to maximize the datarate-transmission length product. Bandwidth or the datarate of the system is incremented by accommodating more number of channels to be multiplexed by reducing the spacing between the channels. The resulting narrow spacing between carrier wavelengths introduces linear and nonlinear distortions in the communication channel. An inline module is implemented in the optical domain to mitigate the linear and nonlinear distortions considered together. The module design is based on the Fractional Fourier Transform (FRFT). The application of FRFT on the optical signal causes it to transform into an intermediary domain in which the effects of both linear and non-linear distortions combine together. We propose an alternate structure for the FRFT implementation. The proposed structure should retain the original profile of the optical signal after the transformation. The module is tested for the modulation technique of CS-RZ. The results show enhanced performance parameters for the channel with the inline module.
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