Lei Mingzheng, Zheng Zhennan, Song Chunqi, Bai Yunping, Qian JinWang, Huang Shanguo, Gao Xinlu
Opt Lett. 2019 Jun 15;44(12):3138-3141. doi: 10.1364/OL.44.003138.
A photonic microwave frequency shift keying (FSK) signal generator is proposed and experimentally demonstrated based on an equivalent photonic switch (EPS). The EPS is constructed using a polarization-multiplexing dual-drive Mach-Zehnder modulator (PM-DMZM). By properly controlling the data sequences and RF signals applied to the PM-DMZM, microwave FSK signals with flexible frequency intervals can be obtained. The proposed FSK signal generator features the advantages of a simple structure, low loss, good stability, and great frequency tunability. In addition, the proposed setup can also be easily reconfigured to generate microwave amplitude shift keying and phase shift keying signals. The experimental results show that 2 Gb/s at 5/14 GHz and 1 Gb/s at 6/20 GHz microwave FSK signals are successfully generated, after transmission over 5 km single-mode fiber. The required received optical power at 7% forward error correction threshold is only -14.48 dBm.
基于等效光子开关(EPS)提出并通过实验证明了一种光子微波频移键控(FSK)信号发生器。该等效光子开关采用偏振复用双驱动马赫-曾德尔调制器(PM-DMZM)构建。通过适当地控制应用于PM-DMZM的数据序列和射频信号,可以获得具有灵活频率间隔的微波FSK信号。所提出的FSK信号发生器具有结构简单、损耗低、稳定性好和频率可调性强等优点。此外,所提出的装置还可以很容易地重新配置以生成微波幅移键控和相移键控信号。实验结果表明,在5 km单模光纤传输后,成功生成了5/14 GHz的2 Gb/s和6/20 GHz的1 Gb/s微波FSK信号。在7%前向纠错阈值下所需的接收光功率仅为-14.48 dBm。