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Influence of fiber-Bragg grating-induced group-delay ripple in high-speed transmission systems

机译:光纤布拉格光栅引起的群时延脉动对高速传输系统的影响

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摘要

The implementation of a chirped fiber-Bragg grating (FBG) for dispersion compensation in high-speed (up to 120 Gbit/s) transmission systems with differential and coherent detection is, for the first time, experimentally investigated. For systems with differential detection, we examine the influence of group-delay ripple (GDR) in 40 GBd 2-, 4-, and 8-ary differential phase shift keying (DPSK) systems. Furthermore, we conduct a nonlinear-tolerance comparison between the systems implementing dispersion-compensating fibers and FBG modules, using a 5×80 Gbit/s 100-GHz-spaced wavelength division multiplexing 4-ary DPSK signal. The results show that the FBG-based system provides a 2 dB higher optimal launch power, which leads to more than 3 dB optical signal-to-noise ratio (OSNR) improvement at the receiver. For systems with coherent detection, we evaluate the influence of GDR in a 112 Gbit/s dual-polarization quadrature phase shift keying system with respect to signal wavelength. In addition, we demonstrate that, at the optimal launch power, the 112 Gbit/s systems implementing FBG modules and that using electronic dispersion compensation provide similar performance after 840 km transmission despite the fact that the FBG-based system delivers lower OSNR at the receiver. Lastly, we quantify the GDR mitigation capability of a digital linear equalizer in the 112 Gbit/s coherent systems with respect to the equalizer tap number (Ntap). The results indicate that at least Ntap =9 is required to confine Q-factor variation within 1 dB.
机译:首次实验研究了differential光纤布拉格光栅(FBG)在具有差分和相干检测的高速(高达120 Gbit / s)传输系统中的色散补偿方面的实现。对于具有差分检测的系统,我们研究了40 GBd 2、4和8进制差分相移键控(DPSK)系统中的群延迟纹波(GDR)的影响。此外,我们使用5×80 Gbit / s间隔100 GHz的波分复用4进制DPSK信号,在实现色散补偿光纤的系统与FBG模块之间进行了非线性容限比较。结果表明,基于FBG的系统提供了更高的2 dB最佳发射功率,从而使接收器的光信噪比(OSNR)提高了3 dB以上。对于具有相干检测的系统,我们评估了GDR在112 Gbit / s双极化正交相移键控系统中相对于信号波长的影响。此外,我们证明,在最佳发射功率下,实现FBG模块的112 Gbit / s系统以及使用电子色散补偿的系统在840 km传输后可提供类似的性能,尽管基于FBG的系统在接收机处的OSNR较低。 。最后,我们针对均衡器抽头数(Ntap)量化了112 Gbit / s相干系统中数字线性均衡器的GDR缓解能力。结果表明至少需要Ntap = 9才能将Q因子变化限制在1 dB以内。

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