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Semiautomatic detection of artificial terrestrial targets for remotely sensed image georeferencing

机译:半自动检测人造地球目标以进行遥感影像地理配准

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摘要

Georeferencing of remote imagery with high spatial resolution can be achieved using the semiAUtomatic GEOreferencing (AUGEO) system which is based on artificial terrestrial targets (ATTs) and software AUGEO-2.0 for location and georeferencing. The aim of this letter is to describe the system and validate it. The ATTs consist of colored hexagonal tarps 0.25–1.0 m in diameter, placed on the ground and georeferenced. The proposed software works as an add-on of Environment for Visualizing Images and was able to locate the ATTs (isolated or disposed in associated couples) in remote images based on its spectral band specificity. To validate the AUGEO system, ATTs were placed on the ground, and remote images were taken from airplanes and unmanned aerial vehicles several times throughout the year at two locations in Southern Spain in 2008. Three variables were considered to study ATT detection accuracy: 1) ATT size; 2) ATT color; and 3) distance between ATTs when they were coupled in pairs. The averaged accuracy for the coupled 1-m red ATTs (separated by 2.5 m) was 95.9%. As the ATT size decreased, the accuracy generally decreased, regardless of the color of the ATTs. Results from coupled analysis show that ATT detection increased as the distance between the ATTs decreased. The proposed system required less time than conventional georeferencing work and allowed the georeferencing of images that do not contain recognizable ground control points. This also contributed to the site-specific management of agricultural plots through remote sensing, which required high-spatial-resolution and accurate georeferenced images.
机译:使用基于人工陆地目标(ATT)和软件AUGEO-2.0进行定位和地理配准的半自动地理配准(AUGEO)系统,可以实现具有高空间分辨率的远程影像的地理配准。这封信的目的是描述系统并对其进行验证。 ATT由直径为0.25-1.0 m的彩色六角形防水布组成,放置在地面上并进行了地理定位。拟议的软件可作为“可视化图像环境”的附加组件,并且能够基于其光谱波段特异性在远程图像中定位ATT(隔离或放置在关联对中)。为了验证AUGEO系统,将ATT放置在地面上,并于2008年全年在西班牙南部的两个地点全年多次从飞机和无人驾驶飞机上获取远程图像。考虑了三个变量来研究ATT检测的准确性:1) ATT大小; 2)ATT颜色; 3)ATT成对耦合时的距离。耦合的1-m红色ATT(相隔2.5 m)的平均准确度为95.9%。随着ATT尺寸的减小,无论ATT的颜色如何,精度通常都会下降。耦合分析的结果表明,ATT检测随着ATT之间距离的减小而增加。与传统的地理配准工作相比,该系统所需的时间更少,并且可以对不包含可识别的地面控制点的图像进行地理配准。这也有助于通过遥感对农田进行特定地点的管理,这需要高空间分辨率和准确的地理参考图像。

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