Impact of fiber effective core area on transmission performance of various data rates over 390 km repeaterless bidirectional Raman span

I. Syuaib, M. Asvial, E. Rahardjo
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引用次数: 2

Abstract

Kerr nonlinear signal distortion and optical signal to noise ratio degradation are two major limiting factors on repeaterless bidirectional Raman amplified ultra-long span system. Both of these limiting factors are affected by the size of the fiber effective core area. The impact of fiber effective core area to Raman amplification gain, Kerr nonlinear signal distortion, Raman amplifier induced noise and optical signal to noise ratio are analytically investigated. Performance characteristics of various transmission data rate of differential phase modulated signal over 390 Km transmission distance of different effective core area fibers are examined. Raman analytical model and transmission simulation model show the advantage of large effective area fiber on reducing both limiting factors and enhance transmission performance.
光纤有效核心区对390公里无中继双向拉曼跨度内不同数据速率传输性能的影响
克尔非线性信号失真和光信噪比退化是限制无中继双向拉曼放大超长跨度系统性能的两个主要因素。这两个限制因素都受光纤有效芯面积大小的影响。分析了光纤有效芯面积对拉曼放大增益、克尔非线性信号失真、拉曼放大器诱导噪声和光信噪比的影响。研究了不同有效芯区光纤在390 Km传输距离上差分相位调制信号不同传输速率的性能特性。拉曼分析模型和传输仿真模型表明,大有效面积光纤在减少限制因素和提高传输性能方面具有优势。
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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