首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Transmission performance of 20 X 10 Gb/s WDM signals using cascaded optimized SOAs with OOK and DPSK modulation formats
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Transmission performance of 20 X 10 Gb/s WDM signals using cascaded optimized SOAs with OOK and DPSK modulation formats

机译:使用具有OOK和DPSK调制格式的级联优化SOA的20 X 10 Gb / s WDM信号的传输性能

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We investigated 20 channels at 10 Gb/s wavelength division multiplexing (WDM) transmission over 1190 km single mode fiber and dispersion compensating fiber using cascaded inline semiconductor optical amplifier at a span of 70 km for RZ-DPSK (return zero differential phase-shift keying) modulation format by using same channel spacing, i.e. 100 GHz. We show for RZ-OOK (return zero on-off keying) format a transmission distance of up to 1050 km with Q factor more than 15 dB, without any power drops. We developed the SOA model for inline amplifier having minimum cross-talks and ASE (amplified spontaneous emission) noise power with sufficient gain. At optimal bias current of 400 mA, a high constant gain of 36.5 dB is obtained up to a saturation power of 21.36 mW. So reduction of cross-talk and distortion is possible by decreasing the bias current at appropriate amplification factor. The DPSK modulation format has less cross-talk as compared to OOK format for nonlinearities and saturation case. The impact of optical power received and Q factor at different distance for both RZ-OOK and RZ-DPSK modulation format has been illustrated. We have shown the optical spectrum and clear Eye diagram at the transmission distance of 1190 km in RZ-DPSK system and 1050 km in RZ-OOK systems. The bit error rate (BER) for all channels observed is less than 10~(-10) up to gain saturation for both DPSK and OOK systems. Finally, we investigated that the transmission distance decreases with a decrease in channel spacing of up to 20 GHz.
机译:我们使用级联在线半导体光放大器在70 km的跨距内对1190 km单模光纤和色散补偿光纤进行了10 Gb / s波分复用(WDM)传输的20个信道的RZ-DPSK(归零零差分相移键控) )调制格式,使用相同的信道间隔,即100 GHz。对于RZ-OOK(返回零开关键控)格式,我们展示了1050 km的传输距离,Q因子超过15 dB,并且没有任何功率下降。我们开发了用于串联放大器的SOA模型,该模型具有最小的串扰和具有足够增益的ASE(放大的自发发射)噪声功率。在400 mA的最佳偏置电流下,最高饱和增益为36.5 dB,最高饱和功率为21.36 mW。因此,可以通过以适当的放大倍数减小偏置电流来减少串扰和失真。与非线性和饱和情况下的OOK格式相比,DPSK调制格式的串扰更少。已经说明了对于RZ-OOK和RZ-DPSK调制格式,接收到的光功率和Q因子在不同距离的影响。我们在RZ-DPSK系统中的传输距离为1190 km,在RZ-OOK系统中的传输距离为1050 km时,显示了光谱和清晰的眼图。对于DPSK和OOK系统,观察到的所有通道的误码率(BER)都小于10〜(-10),直至达到增益饱和。最后,我们研究了传输距离随着高达20 GHz的信道间隔的减小而减小。

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