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Radio-over-fiber system with octuple frequency optical millimeter-wave signal generation using dual-parallel Mach Zehnder modulator based on four-wave mixing in semiconductor optical amplifier

机译:基于半导体光放大器中基于四波混频的双并行Mach Zehnder调制器产生八倍频光毫米波信号的光纤无线电系统

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摘要

We have proposed a scheme of radio-over-fiber (RoF) system employing a dual-parallel Mach-Zehnder modulator (DP-MZM) based on four-wave mixing (FWM) in a semiconductor optical amplifier (SOA). In this scheme, the pump and the signal are generated by properly adjusting the direct current bias, modulation index of the DP-MZM, and the phase difference between the sub-MZMs. Because of the pump and the signal deriving from the same optical wave, the polarization states of the two lightwaves are copolarized. The single-pump FWM is polarization insensitive. After FWM and optical filtering, the optical millimeter-wave with octuple frequency is generated. About 40-GHz RoF system with a 2.5-Gbit/s signal is implemented by numerical simulation; the result shows that it has a good performance after the signal is transmitted over 40-km single-mode fiber. Then, the effects of the SOA's injection current and the carrier-to-sideband ratio on the system performance are discussed by simulation, and the optimum value for the system is obtained.
机译:我们已经提出了一种在半导体光放大器(SOA)中使用基于四波混频(FWM)的双并行马赫曾德尔调制器(DP-MZM)的光纤无线电(RoF)系统的方案。在此方案中,通过适当调节直流偏置,DP-MZM的调制指数以及子MZM之间的相位差来生成泵浦和信号。由于泵浦和来自同一光波的信号,两个光波的偏振态被共偏振。单泵FWM对极化不敏感。经过FWM和光学滤波后,会生成八倍频的毫米波光。通过数值模拟实现了具有2.5 Gbit / s信号的大约40 GHz RoF系统。结果表明,信号在40 km单模光纤上传输后具有良好的性能。然后,通过仿真讨论了SOA注入电流和载带比对系统性能的影响,并获得了系统的最佳值。

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