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Interleaved Bidirectional Transmission of 16 $times$ 10-Gb/s DWDM Signals Using DPSK Modulation Format and In-line Semiconductor Optical Amplifiers

机译:使用DPSK调制格式和直插式半导体光放大器进行16倍10 Gb / s DWDM信号的交错双向传输

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摘要

We have performed both experimental and numerical analyses of interleaved bidirectional transmission of 16 $times$ 10-Gb/s dense-wavelength-division-multiplexed (DWDM) signals using differential-phase-shift-keying (DPSK) modulation format and in-line semiconductor optical amplifiers (SOAs). The constant intensity of DPSK-modulated DWDM signals enabled us to mitigate the crosstalk effects in the bidirectional SOA. We have demonstrated error-free bidirectional transmission of 16 channels over an 80-km single-mode fiber (SMF) with matching dispersion-compensating fiber and in-line amplification provided by an SOA. SOAs can be used for bidirectional transmission if the facet reflections can be controlled. In order to understand further the effect of the SOA facet reflectivity on transmission results, we developed a simulation model for our system. Based on the good agreement between our simulation and experimental results, we have found out that the system reflections can be minimized by careful optimization of the bias current and reflectivity of the SOA.
机译:我们已经使用差分相移键控(DPSK)调制格式和在线方式对16个x乘以10 Gb / s的密集波分复用(DWDM)信号的交错双向传输进行了实验和数值分析半导体光放大器(SOA)。恒定强度的DPSK调制的DWDM信号使我们能够减轻双向SOA中的串扰影响。我们已经演示了在80公里的单模光纤(SMF)上通过匹配的色散补偿光纤和SOA提供的在线放大,可以无错误地双向传输16个信道。如果可以控制刻面反射,则SOA可以用于双向传输。为了进一步了解SOA面反射率对传输结果的影响,我们为系统开发了一个仿真模型。基于我们的仿真和实验结果之间的良好一致性,我们发现可以通过精心优化SOA的偏置电流和反射率来最小化系统反射。

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