首页> 外文会议>International Society for Photogrammetry and Remote Sensing Workshop Laser Scanning >THE EFFECTS OF LASER REFLECTION ANGLE ON RADIOMETRIC CORRECTION OF THE AIRBORNE LIDAR INTENSITY DATA
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THE EFFECTS OF LASER REFLECTION ANGLE ON RADIOMETRIC CORRECTION OF THE AIRBORNE LIDAR INTENSITY DATA

机译:激光反射角对空气流动激光雷达强度​​数据辐射校正的影响

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Radiometric correction (RC) of the airborne Light Detection And Ranging (LiDAR) intensity data has been studied in the last few years. The physical model of the RC relies on the use of the laser range equation to convert the intensity values into the spectral reflectance of the reflected objects. A number of recent studies investigated the effects of the LiDAR system parameters (i.e. range, incidence angle, beam divergence, aperture size, automatic gain control, etc.) on the results of the RC process. Nevertheless, the condition of the object surface (slope and aspect) plays a crucial role in modelling the recorded intensity data. The variation of the object surface slope and aspect affects the direction as well as the magnitude of the reflected laser pulse which makes significant influence on the bidirectional reflectance distribution function. In this paper, the effects of the angle of reflection, which is the angle between the surface normal and the incidence laser pulse, on the RC results of the airborne LiDAR intensity data is investigated. A practical approach is proposed to compute the angle of reflection using the digital surface model (DSM) derived from the LiDAR data. Then, a comparison between the results of the intensity data after RC using the scan angle and RC using the angle of reflection is carried out. The comparison is done by converting the intensity data into equivalent image data and evaluating the classification results of the intensity image data. Preliminary findings show that: 1) the variance-to-mean ratio of the land cover features are significantly reduced while using the angle of reflection in the RC process; 2) 4percent of accuracy improvement can be achieved using the intensity data corrected with the scan angle. The accuracy improvement increases to 8percent when using the intensity data corrected with the angle of reflection. The research work practically justifies the use of the reflection angle in the RC process of airborne LiDAR intensity data.
机译:在过去的几年里,已经研究了空气传播光检测和测距(LIDAR)强度数据的辐射校正(RC)。 RC的物理模型依赖于使用激光范围方程来将强度值转换为反射物体的光谱反射率。最近的一些研究调查了LIDAR系统参数的影响(即范围,入射角,光束发散,光圈尺寸,自动增益控制等)对RC过程的结果。然而,物体表面(斜率和方面)的状况在建模记录的强度数据中起着至关重要的作用。物体表面斜率和方面的变化影响了对反射激光脉冲的反射激光脉冲的大小产生了显着影响对双向反射率分布功能的影响。在本文中,研究了反射角度的影响,即表面正常和入射激光脉冲之间的角度在空气传播的LIDAR强度数据的RC结果上。建议使用从LIDAR数据导出的数字表面模型(DSM)来计算反射角度的实际方法。然后,执行使用使用反射角度和使用反射角度的RC之后的强度数据的结果之间的比较。通过将强度数据转换成等效图像数据并评估强度图像数据的分类结果来完成比较。初步结果表明:1)在使用RC过程中的反射角度的同时,陆地覆盖特征的变化与平均比率显着降低; 2)可以使用用扫描角校正的强度数据来实现精度改进的4%。使用用反射角度校正的强度数据时,精度改善会增加到8%。该研究工作实际上是在机载激光雷达强度​​数据的RC过程中使用反射角度的原理。

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