采用NRZ、RZ、CSRZ调制方案的8通道色散补偿光纤DWDM系统性能分析

R. Mishra, N. K. Shukla, M. Atif, C. Dwivedi
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引用次数: 5

摘要

在光纤上使用DWDM技术可以实现高数据速率。不同频率的光信号在DWDM系统中被调制,然后这些信号被多路复用成单一的光流,通过光纤电缆发送。本文比较了不同调制格式(NRZ、RZ和CSRZ)和不同功率水平下DWDM系统的性能。为了进行比较研究,采用了8个传输信号的数据通道。这里使用的各种组件是EDFA,长度为14公里的色散补偿光纤(DCF)以及长度为86公里的单模光纤(SMF)。系统运行速度为10gbps,链路长度为86公里,波长为1550纳米。提出了在不改变原有设计的前提下有效提高系统性能的调制格式。系统性能的评价依据是质量因子(Q-factor)和误码率(BER)。采用CSRZ调制后,系统性能良好,误码率大大降低,质量因子(Q-factor)提高。采用Optiwave公司提供的optisystem软件对DWDM系统进行了设计和仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of 8 Channel DWDM Systems via Dispersion Compensation Fiber Using NRZ, RZ, CSRZ Modulation Schemes
High data rates can be achieved using DWDM technology over optical fiber. Optical signals having different frequencies are modulated in DWDM system and then these signals are multiplexed into a single stream of light that is sent over optical fiber cable. Here, DWDM system performance is being compared under different modulation formats (NRZ, RZ, and CSRZ) and at different power levels. For the comparative study 8 data channels are taken through which signals are being transmitted. The various components that have been used here are EDFA, dispersion compensation fiber (DCF) of length 14 km along with single mode fiber (SMF) of length 86 km. System is operating at 10 Gbps with link length of 86 km at a wavelength of 1550 nm. The effective modulation format which will effectively increase the system performance without a change in previous design is presented. The system performance is evaluated on the basis of Quality factor (Q-factor) and Bit Error Rate (BER). The performance of system provides acceptable result with CSRZ modulation with much-reduced BER and increase in Quality Factor (Q-factor). DWDM system is designed and simulated on Optisytem software provided by Optiwave.
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