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Maximizing the Transmission Performance of Adaptively Modulated Optical OFDM Signals in Multimode-Fiber Links by Optimizing Analog-to-Digital Converters

机译:通过优化模数转换器来最大化多模光纤链路中自适应调制OFDM信号的传输性能

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摘要

Based on a comprehensive theoretical model of a recently proposed novel technique known as adaptively modulated optical orthogonal frequency-division multiplexing (AMOOFDM), investigations are undertaken into the impact of an analog-to-digital converter involved in the AMOOFDM modem on the transmission performance of AMOOFDM signals in unamplified intensity-modulation and direct-detection (IMDD) multimode-fiber (MMF)-based links. It is found that signal quantization and clipping effects are significant in determining the maximum achievable transmission performance of the AMOOFDM modem. A minimum quantization bit value of ten and optimum clipping ratio of 13 dB are identified, based on which, the transmission performance is maximized. It is shown that 40-Gb/s-over-220-m and 32-Gb/s-over-300-m IMDD-AMOOFDM signal transmission at 1550 nm with loss margins of about 15 dB is feasible in the installed worst case 62.5-$muhbox{m}$ MMF links having 3-dB effective bandwidths as small as 150 MHz $cdot$ km. Meanwhile, excellent performance, robustness to fiber types, and variation in launch conditions and signal bit rates is observed. In addition, discussions are presented of the potential of 100-Gb/s AMOOFDM signal transmission over installed MMF links.
机译:基于最近提出的称为自适应调制光学正交频分复用(AMOOFDM)的新技术的综合理论模型,研究了AMOOFDM调制解调器中涉及的模数转换器对ATM传输性能的影响。 AMOOFDM信号处于未放大的基于强度调制和直接检测(IMDD)的多模光纤(MMF)链路中。已经发现,信号量化和削波效应对于确定AMOOFDM调制解调器的最大可实现的传输性能非常重要。识别出最小的量化比特值为10,最佳削波比为13 dB,基于此,传输性能得以最大化。结果表明,在已安装的最坏情况62.5下,在1550 nm处以大约15 dB的损耗裕量传输40 Gb / s-超过220-m / m和32 Gb / s-超过300-m的IMDD-AMOOFDM信号是可行的-$ -muhbox {m} $ MMF链接具有3-dB的有效带宽,小至150 MHz。同时,观察到出色的性能,对光纤类型的鲁棒性以及发射条件和信号比特率的变化。此外,还讨论了通过已安装的MMF链路进行100 Gb / s AMOOFDM信号传输的可能性。

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