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首页> 外文期刊>Journal of Lightwave Technology >Frequency stabilized 622-Mb/s 16-channel optical FDM system and its performance in 1.3/1.55-/spl mu/m zero-dispersion fiber transmission
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Frequency stabilized 622-Mb/s 16-channel optical FDM system and its performance in 1.3/1.55-/spl mu/m zero-dispersion fiber transmission

机译:频率稳定的622-Mb / s 16通道光学FDM系统及其在1.3 / 1.55- / spl mu / m零色散光纤传输中的性能

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摘要

A study has been conducted on a densely multiplexed 16-channel optical FDM system. A transmitter contains 16 two-section MQW DFB-LD's and a star coupler. An automatic optical multi-frequency controller stabilizes each LD of 10 GHz spacing within /spl plusmn/100-MHz accuracy. A receiver consists of heterodyne-delay-demodulators using a polarization diversity. Any desired channel can be tuned by a novel frequency discriminator with no insensitive frequency region. The system has successfully transmitted 622 Mb/s-16-channel HDTV signals through 110 km long 1.3 /spl mu/m-zero-dispersion fiber. We have also studied error rate degradation due to four-wave mixing in a 1.55 /spl mu/m-dispersion-shifted-fiber. Experimental results have revealed the allowable total input power to be +2 dBm for dispersion-shifted fibers.
机译:已经对密集复用的16通道光学FDM系统进行了研究。发射器包含16个两段式MQW DFB-LD和一个星形耦合器。自动光学多频控制器可将每个10 GHz间隔的LD稳定在/ spl plusmn / 100 MHz精度内。接收机由利用极化分集的外差延迟解调器组成。新型的鉴频器可以调谐任何所需的频道,而不会出现不敏感的频率区域。该系统已通过110公里长的1.3 / spl mu / m零色散光纤成功传输了622 Mb / s-16通道HDTV信号。我们还研究了由于在1.55 / spl mu / m色散位移光纤中进行四波混合而导致的误码率下降。实验结果表明,色散位移光纤允许的总输入功率为+2 dBm。

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