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Fusion of LIDAR data with hyperspectral and high-resolution imagery for automation of DIRSIG scene generation

机译:将LIDAR数据与高光谱和高分辨率图像融合以实现DIRSIG场景生成的自动化

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Developing new remote sensing instruments is a costly and time consuming process. The Digital Imaging and Remote Sensing Image Generation (DIRSIG) model gives users the ability to create synthetic images for a proposed sensor before building it. However, to produce synthetic images, DIRSIG requires facetized, three-dimensional models attributed with spectral and texture information which can themselves be costly and time consuming to produce. Recent work by Walli has shown that coincident LIDAR data and high-resolution imagery can be registered and used to automatically generate the geometry and texture information needed for a DIRSIG scene. This method, called LIDAR Direct, greatly reduces the time and manpower needed to generate a scene, but still requires user interaction to attribute facets with either library or field measured spectral information. This paper builds upon that work and presents a method for autonomously generating the geometry, texture, and spectral content for a scene when coincident LIDAR data, high-resolution imagery, and HyperSpectral Imagery (HSI) of a site are available. Then the method is demonstrated on real data.
机译:开发新的遥感仪器是一个昂贵且耗时的过程。数字成像和遥感图像生成(DIRSIG)模型使用户能够在构建拟议的传感器之前为其创建合成图像。但是,要生成合成图像,DIRSIG需要具有光谱和纹理信息的多面三维模型,而这些模型本身可能既昂贵又耗时。 Walli的最新工作表明,可以记录一致的LIDAR数据和高分辨率图像,并将其用于自动生成DIRSIG场景所需的几何和纹理信息。这种称为LIDAR Direct的方法极大地减少了生成场景所需的时间和人力,但仍需要用户交互才能通过库或现场测量的光谱信息将构面属性化。本文以该工作为基础,并提出了一种方法,该方法可在站点的重合LIDAR数据,高分辨率图像和超光谱图像(HSI)可用时,自动生成场景的几何形状,纹理和光谱内容。然后在实际数据上对该方法进行了演示。

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