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首页> 外文期刊>Journal of Lightwave Technology >30-gb/s signal transmission over 40-km directly modulated DFB-laser-based single-mode-fiber links without optical amplification and dispersion compensation
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30-gb/s signal transmission over 40-km directly modulated DFB-laser-based single-mode-fiber links without optical amplification and dispersion compensation

机译:在40公里直接调制的基于DFB激光器的单模光纤链路上以30 km / s的信号传输速度,而无需进行光放大和色散补偿

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摘要

Based on a recently proposed novel optical-signal-modulation technique of adaptively modulated optical orthogonal frequency-division multiplexing (AMOOFDM), numerical simulations of the transmission performance of AMOOFDM signals are undertaken in directly modulated DFB laser (DML)-based single-mode-fiber (SMF) links without optical amplification and dispersion compensation. It is shown that a 30-Gb/s transmission over a 40-km SMF with a loss margin of greater than 4.5 dB is feasible in the aforementioned simple configuration using intensity modulation and direct detection (IMDD). In addition, the DFB-laser frequency chirp and the transmission-link loss are identified to be the key factors limiting the maximum achievable transmission performance of the technique. The first factor is dominant for transmission distances of 80 km. It is also observed that fibers of different types demonstrate similar transmission performances, on which fiber nonlinear effects are negligible.
机译:基于最近提出的自适应调制光学正交频分复用(AMOOFDM)的新型光信号调制技术,在基于直接调制DFB激光器(DML)的单模光纤中对AMOOFDM信号的传输性能进行了数值模拟。光纤(SMF)链路,无需进行光放大和色散补偿。结果表明,在上述使用强度调制和直接检测(IMDD)的简单配置中,在40公里SMF上以30 Gb / s的速度传输且损失余量大于4.5 dB是可行的。此外,DFB激光频率chi和传输链路损耗被确定为限制该技术可实现的最大传输性能的关键因素。第一个因素对于80公里的传输距离至关重要。还观察到,不同类型的光纤表现出相似的传输性能,在该性能上,光纤的非线性影响可以忽略。

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