Design and simulation of long-haul 32 × 40 Gb/s Duobinary DWDM link in the presence of non-linearity with under-compensated dispersion

L. Sharan, V. K. Chaubey
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引用次数: 9

Abstract

In this paper, we present a simulation based analysis of long haul 40 Gb/s Dense Wavelength Division Multiplexing (DWDM) system operating at 1.28 Tb/s with Duobinary Return-to-Zero (DRZ) modulation format. The 32 Channels DWDM system has been numerically compared for pre, post and symmetrical dispersion compensation schemes with 50 GHz channel separation to characterize this modulation format for 40 Gb/s data rate. The transmission link is designed first with perfect compensation and then with under-compensation. The performance has been evaluated using Q value as the major parameter, by varying the input power for different transmission distances with different dispersion compensation schemes. It is observed that even under four-wave mixing(FWM) degradation, DRZ based DWDM system shows acceptable performance beyond 1000 Km. This paper reports the superiority of DRZ format over the conventional NRZ /RZ schemes in both cases.
长距离32 × 40 Gb/s双二进制DWDM链路的设计与仿真
在本文中,我们提出了一种基于仿真的基于1.28 Tb/s双二进制归零(DRZ)调制格式的40 Gb/s密集波分复用(DWDM)长途系统。对32信道DWDM系统进行了50 GHz信道间隔的前后和对称色散补偿方案的数值比较,以表征该调制格式在40 Gb/s数据速率下的特性。首先设计了完全补偿,然后设计了欠补偿。以Q值为主要参数,通过不同色散补偿方案下不同传输距离下输入功率的变化,对系统性能进行了评价。研究发现,即使在四波混频(FWM)退化的情况下,基于DRZ的DWDM系统在1000 Km以上仍具有良好的性能。本文报道了在这两种情况下DRZ格式相对于传统NRZ /RZ格式的优越性。
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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