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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Combination of overlap-driven adjustment and Phong model for LiDAR intensity correction
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Combination of overlap-driven adjustment and Phong model for LiDAR intensity correction

机译:重叠驱动调整与Phong模型相结合的LiDAR强度校正

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摘要

Airborne laser scanning LiDAR systems deliver not only geometric (X,Y,Z) information of the scanned surfaces but also the returned intensity of the laser pulse. Recent studies have shown the potential of using intensity data for many applications. However, there are limitations in using the raw intensity data because of radiometric system bias, reflectance noise and variations between adjacent strips. To overcome these limitations, a three-step LiDAR intensity correction algorithm is proposed. Following corrections for environmental and surface effects, an overlap-driven least-squares adjustment model that does not rely on the selection of homologous points minimizes intensity differences in the overlap area of strips. Finally, the Phong reflection model, which describes both diffuse and specular reflectance, is used to attenuate the effects of strong reflections that typically occur over wet or water dominated areas. The algorithm was applied to a multi-strip LiDAR dataset that covers wetlands in the estuary of the Yellow River, People's Republic of China. Results demonstrated a significant reduction in radiometric differences in the overlap areas, and strong specular reflections in the nadir regions were reduced. Objects which were obscured by the specular reflection in the original intensity data were clearly identifiable after the adjustment.
机译:机载激光扫描LiDAR系统不仅提供扫描表面的几何(X,Y,Z)信息,而且还提供返回的激光脉冲强度。最近的研究表明在许多应用中使用强度数据的潜力。但是,由于辐射系统的偏差,反射噪声和相邻条带之间的变化,使用原始强度数据存在局限性。为了克服这些限制,提出了一种三步LiDAR强度校正算法。在对环境和表面效应进行校正之后,不依赖选择同源点的重叠驱动最小二乘平差模型将带材重叠区域中的强度差异最小化。最后,描述散射和镜面反射率的Phong反射模型用于减弱通常在湿或水为主的区域上发生的强反射的影响。该算法已应用于覆盖中国黄河河口湿地的多条LiDAR数据集。结果表明,重叠区域的辐射测量差异显着减少,并且最低点区域的强镜面反射减少了。调整后,可以清楚地识别出原始强度数据中被镜面反射遮挡的物体。

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