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AN EMPIRICAL MODEL FOR ORIENTATION OF ALOS-PRISM IMAGES OF LEVEL 1B2

机译:1B2水平的Alos-Prism图像定向的实证模型

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The Japanese satellite ALOS incorporates the PRISM sensor, dedicated to high resolution stereo imaging. It has a potential to derive elevation data compatible with medium scale topographic mapping scales, such as 1:25,000 or even larger. Being dedicated to systematic stereo coverage it can contribute for topographic mapping purposes in many undeveloped regions of the world. Rigorous photogrammetric treatment is not always a simple task for many users, for several reasons. This paper presents a methodology of image orientation using an alternative empirical sensor model, applicable to images of processing level 1B2. It is based on adjustments in image space and in height determination by a linear relation with parallax. It uses the approximate geolocation information derived from the sensor navigation instruments, provided with images Tests were realized with PRISM images of a relatively mountainous region in Portugal. A total of 50 accurate ground control points (some used as check points) were used to test the proposed method. The overall accuracy, assessed with 41 independent check points, was of 2.1 m for the planimetry and 2.6 m for height. These results are slightly worse than the ones referred in the literature for precise sensor models, but compatible with the standards for 1:25,000 scale mapping.
机译:日本卫星Alos采用棱镜传感器,致力于高分辨率立体化成像。它有可能导出与中型地形映射尺度兼容的高程数据,例如1:25,000甚至更大。致力于系统的立体声覆盖,它可以为世界上许多未开发的地区进行地形映射目的有助于。由于几个原因,严格的摄影测量治疗对许多用户来说并不总是一个简单的任务。本文介绍了使用替代经验传感器模型的图像取向的方法,适用于处理级别1B2的图像。它基于图像空间的调整以及通过与视差线性关系的高度确定。它使用从传感器导航仪器导出的近似地理定位信息,其具有在葡萄牙的相对山区的棱镜图像实现的图像测试。共使用50个精确的地面控制点(一些用作检查点)来测试所提出的方法。使用41个独立检查点评估的总体精度为2.1米,对于平面图为2.1米,高度为2.6米。这些结果比精确传感器型号的文献中提到的这些结果略差,但与1:25,000的标准相兼容。

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