激光雷达
遥感
光学
多普勒效应
时间分辨率
风速
图像分辨率
光谱分辨率
物理
气象学
谱线
地质学
天文
作者
Liang Chen,Chong Wang,Xianghui Xue,Xiankang Dou,Tingdi Chen
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2022-06-01
卷期号:47 (13): 3179-3179
被引量:29
摘要
Hyperfine wind structure detection is important for aerodynamic and aviation safety. Pulse coherent Doppler wind LIDAR (PCDWL) is a widespread wind remote sensing method with tunable spatial and temporal resolutions. However, meter scale and sub-second resolution are still challenging for PCDWL. This is because of the constraints among short laser pulse duration, spectral broadening, detection accuracy, and real-time processing. In this Letter, to further improve the spatial and temporal resolution of PCDWL, we optimize the optical design of a nanosecond fiber laser and telescope and adopt a new, to the best of our knowledge, algorithm called the even-order derivative peak sharpening technique. During the experiment, all-fiber PCDWL with spatial and temporal resolutions of 3 m and 0.1 s, respectively, is demonstrated. Two-day continuous observation of the wakes of the Chinese high-speed train shows detailed hyperfine wind structures. This is similar to a computational fluid dynamics simulation.
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