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高光谱激光雷达光学接收系统的原型开发与评估

Prototype development and evaluation of a hyperspectral lidar optical receiving system.

作者信息

Qian Liyong, Wu Decheng, Liu Dong, Shi Shuo, Song Shalei, Gong Wei

出版信息

Opt Express. 2024 Mar 25;32(7):10786-10800. doi: 10.1364/OE.514442.

Abstract

As a new type of active Earth observation technology, airborne hyperspectral lidar combines the advantages of traditional lidar 3D information acquisition and passive hyperspectral imaging technology, and it can achieve integrated imaging detection with a high spatial and hyperspectral resolution. Thus, it has become an important future direction of Earth surface remote sensing technology. This article introduces the design and development of an airborne hyperspectral imaging lidar system. The hyperspectral lidar adopts a focal plane splitting method, combined with an array of 168 optical fibers, to couple wide-spectral-range laser echo signals one by one to the corresponding single tube detector, achieving efficient splitting and precise coupling of supercontinuum laser pulse echo signals. This article proposes a fast synchronous calibration method that is suitable for hyperspectral imaging lidar systems. Results show that the spectral range of the hyperspectral lidar system is 400-900 nm, and the spectral resolution of single-fiber detection is greater than 3 nm. Notably, this article focuses on analyzing the abnormal detection channels based on the calibration results. With the test results of adjacent channels combined, the reason for the abnormal spectral bandwidth of channel 17 is analyzed as an example. This research points out the direction for verifying the design parameters of the hyperspectral lidar prototype and lays an important foundation for airborne flight test of the hyperspectral lidar.

摘要

作为一种新型的主动式对地观测技术,机载高光谱激光雷达融合了传统激光雷达三维信息获取与被动式高光谱成像技术的优势,能够实现高空间分辨率和高光谱分辨率的综合成像探测。因此,它已成为地表遥感技术未来的一个重要发展方向。本文介绍了一种机载高光谱成像激光雷达系统的设计与开发。该高光谱激光雷达采用焦平面分光方法,结合168根光纤阵列,将宽光谱范围的激光回波信号逐一耦合到对应的单管探测器上,实现了超连续激光脉冲回波信号的高效分光与精确耦合。本文提出了一种适用于高光谱成像激光雷达系统的快速同步校准方法。结果表明,该高光谱激光雷达系统的光谱范围为400 - 900 nm,单光纤探测的光谱分辨率大于3 nm。值得注意的是,本文重点基于校准结果分析异常探测通道。结合相邻通道的测试结果,以分析通道17光谱带宽异常的原因为例。该研究为验证高光谱激光雷达样机设计参数指明了方向,为高光谱激光雷达的机载飞行试验奠定了重要基础。

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