论文标题

使用微波光子信号处理的时间拉伸的飞秒劳拉

Time-Stretched Femtosecond Lidar Using Microwave Photonic Signal Processing

论文作者

Zhao, Lijie, Xia, Haiyun, Hu, Yihua, Wu, Tengfei, Zhang, Zhen, Han, Jibo, Wu, Yunbin, Luo, Tiancheng

论文摘要

提出并证明了具有0.1 Mega Hertz更新速率的实时范围LIDAR和少量的微观计分辨率结合了分散傅立叶变换和瞬时微波频率测量。随着时间拉伸的飞秒激光脉冲穿过全纤维马切德干涉仪,将检测光束插入一只臂的光路径中,将位移编码为暂时干涉图的频率变化。为了应对在光电探测器上生成的微波脉冲的存储和实时处理方面的挑战,我们转向全光信号处理。使用强度调制器的时间域干涉图调制载波。之后,将微波脉冲的频率变化上传到一阶边带。最后,通过对称锁定的频率歧视器将边带的频移变为变速器变化。在实验中,通过合并可编程的光学滤波器,可以实现具有可调节动态范围和检测灵敏度的实时范围系统。标准偏差为7.64μm,在15 mM检测范围内的总体平均误差为19.10μm,标准偏差为37.73μm,在45 mM检测范围内的总体平均误差分别为36.63μm。

A real-time ranging lidar with 0.1 Mega Hertz update rate and few-micrometer resolution incorporating dispersive Fourier transformation and instantaneous microwave frequency measurement is proposed and demonstrated. As time-stretched femtosecond laser pulse passing through an all-fiber Mach-Zehnder Interferometer, where the detection light beam is inserted into the optical path of one arm, the displacement is encoded to the frequency variation of the temporal interferogram. To deal with the challenges in storage and real-time processing of the microwave pulse generated on a photodetector, we turn to all-optical signal processing. A carrier wave is modulated by the time-domain interferogram using an intensity modulator. After that, the frequency variation of the microwave pulse is uploaded to the first order sidebands. Finally, the frequency shift of the sidebands is turned into transmission change through a symmetric-locked frequency discriminator. In experiment, A real-time ranging system with adjustable dynamic range and detection sensitivity is realized by incorporating a programmable optical filter. Standard deviation of 7.64 μm, overall mean error of 19.10 μm over 15 mm detection range and standard deviation of 37.73 μm, overall mean error of 36.63 μm over 45 mm detection range are obtained respectively.

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