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Record-high and robust capacity versus reach performance of adaptive real-time dual-band optical OFDM signals for upgrading legacy MMF systems

机译:历史高且强大的容量与Authtive Real-Time双频光学OFDM信号的升级性能,用于升级传统MMF系统

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Real-time dual-band optical orthogonal frequency division multiplexing (OOFDM) transceivers incorporating DACs/ADCs operating at sampling speeds as low as 4GS/s and FPGA-based DSP clocked at only 100MHz are employed to explore the maximum achievable transmission performance of electro-absorption modulated laser-based multimode fiber (MMF) systems subject to conventional optical launching. Making use of adaptive subcarrier bit and subcarrier/sub-band power loading, record-high 20.125Gb/s over 800m OM2 MMF transmission of real-time dual-band OOFDM signals is experimentally demonstrated, for the first time, with an optical power penalty as low as 1dB. In addition, extensive experimental explorations of dual-band OOFDM capacity versus reach performance are also undertaken over the aforementioned systems consisting of different MMF types and lengths. It is shown that 20.125Gb/s over 100m and 19.625Gb/s over 1000m OOFDM transmissions are obtainable in OM2-only MMF systems, and that 20Gb/s over 100m and 19.375Gb/s over 1000m OOFDM transmissions are achievable in OM1-only MMF systems. Furthermore, in various OM1 and OM2 MMF systems, minimum optical power penalties of <1dB are observed for MMF transmission distances ranging from 300m to 800m. Experimental results indicate that >19Gb/s over 1000m transmission of dual-band OOFDM signals are practically feasible in any legacy MMF systems.
机译:采用基于4GS / S和基于FPGA的DSP运行的DACS / ADC的实时双频频率光正交分频复用(OOFDM)收发器以低至4GS / s和基于FPGA的DSP时钟,以探讨电气的最大可实现的传输性能经过传统光学发射,吸收调制调制的基于激光的多模光纤(MMF)系统。使用自适应子载波比特和子载波/子带电荷,记录高20.125GB / s超过800M OM2 MMF的实时双频频段信号进行实验展示,首次使用光学功率损失低至1dB。此外,还在上述由不同MMF类型和长度组成的上述系统上进行了广泛的双频频率和达到性能的实验探索。结果表明,在OM2的MMF系统中可以获得超过100M和19.625GB / s超过100米和19.625GB / s的20.125gb / s,并且在OM1-ock中可以实现超过100米的20gb / s超过100米和19.375gg / s。 MMF系统。此外,在各种OM1和OM2 MMF系统中,对于从300m至800m的MMF传输距离观察到<1dB的最小光功率损失。实验结果表明&#x003e; 19gb / s超过1000米的双频OOFDM信号传输在任何传统MMF系统中都是可行的。

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