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Real-time experimental demonstration of low-cost VCSEL intensity-modulated 1125Gb/s optical OFDM signal transmission over 25km PON systems

机译:低成本VCSEL强度调制的1125GB / S光学OFDM信号传输的实时实验演示超过25km PON系统

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摘要

The feasibility of utilising low-cost, un-cooled vertical cavity surface-emitting lasers (VCSELs) as intensity modulators in real-time optical OFDM (OOFDM) transceivers is experimentally explored, for the first time, in terms of achievable signal bit rates, physical mechanisms limiting the transceiver performance and performance robustness. End-to-end real-time transmission of 11.25Gb/s 64-QAM-encoded OOFDM signals over simple intensity modulation and direct detection, 25km SSMF PON systems is experimentally demonstrated with a power penalty of 0.5dB. The low extinction ratio of the VCSEL intensity-modulated OOFDM signal is identified to be the dominant factor determining the maximum obtainable transmission performance. Experimental investigations indicate that, in addition to the enhanced transceiver performance, adaptive power loading can also significantly improve the system performance robustness to variations in VCSEL operating conditions. As a direct result, the aforementioned capacity versus reach performance is still retained over a wide VCSEL bias (driving) current (voltage) range of 4.5mA to 9mA (275mVpp to 320mVpp). This work is of great value as it demonstrates the possibility of future mass production of cost-effective OOFDM transceivers for PON applications.
机译:利用低成本,未冷却的垂直腔表面发射激光器(VCSELS)作为强度调制器的实时光学OFDM(OOFDM)收发器中的强度调制器是通过可实现的信号比特速率进行实验探索的,物理机制限制收发器性能和性能稳健性。 11.25GB / S 64-QAM编码的OOFDM信号的端到端实时传输在简单的强度调制和直接检测方面,25km SSMF PON系统进行了实验证明了0.5dB的功率损失。识别VCSEL强度调制的OOFDM信号的低消光比是确定最大可获得的传输性能的主要因素。实验研究表明,除了增强的收发器性能外,自适应电源负载还可以显着提高对VCSEL操作条件的变化的系统性能鲁棒性。作为直接结果,上述容量与达到性能仍然保持在4.5mA至9mA的宽VCSEL偏置(驱动)电流(电压)范围内(275MVPP至320mVPP)。这项工作的价值具有很大的价值,因为它表明了PON应用程序未来大规模生产的可能性。

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