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首页> 外文期刊>The Photogrammetric Record >DEVELOPMENT AND TESTING OF A GENERIC SENSOR MODEL FOR PUSHBROOM SATELLITE IMAGERY
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DEVELOPMENT AND TESTING OF A GENERIC SENSOR MODEL FOR PUSHBROOM SATELLITE IMAGERY

机译:普通卫星影像通用传感器模型的开发与测试。

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A new generic pushbroom sensor model for high-resolution satellite images in which the orbit and attitudes are modelled by splines is presented. Direct observations for the satellite orbits and attitudes provided in imagery metadata files are used to determine the parameters of these splines. As such observations are contaminated by systematic errors, the new sensor model also incorporates error correction for the orbit and attitude angles. Camera model parameter definitions and file formats generally differ between satellite pushbroom scanners, and the system image- to object-space transformation models are. not always compatible with a sensor model based on the familiar perspective model applied in photogrammetry. In order to make the new sensor model applicable to a large number of satellite imaging systems, these vendor-specific definitions are first mapped to the definitions of the new sensor model during data import. This is illustrated for QuickBird, SPOT 5 and ALOS PRISM imagery. The model has been extensively tested using imagery from these same three satellites, over test sites in Melbourne and Bhutan. The tests have shown that the new sensor model can produce georeferencing accuracy of 1 pixel and better when biases in orbit and attitude data are compensated.%Bhutan getestet. Diese Tests haben gezeigt, dass unter Anwendung des Korrekturmodells für die systematischen Fehler Subpixelgenauigkeit für die Georeferenzierung von Bildern dieser drei Satelliten erreicht werden kann.
机译:提出了一种用于高分辨率卫星图像的新型通用手推扫帚传感器模型,该模型通过样条曲线模拟了轨道和姿态。图像元数据文件中提供的卫星轨道和姿态的直接观测值用于确定这些样条曲线的参数。由于这种观测受到系统误差的污染,因此新的传感器模型还结合了对轨道和姿态角的误差校正。卫星推扫扫帚之间的相机模型参数定义和文件格式通常有所不同,而系统的图像到对象空间转换模型则有所不同。并非始终与基于摄影测量中应用的常见透视模型的传感器模型兼容。为了使新传感器模型适用于大量卫星成像系统,在数据导入期间,这些特定于供应商的定义首先映射到新传感器模型的定义。 QuickBird,SPOT 5和ALOS PRISM影像对此进行了说明。在墨尔本和不丹的测试地点,使用这三颗卫星的图像对模型进行了广泛的测试。测试表明,当补偿轨道和姿态数据中的偏差时,新的传感器模型可以产生1个像素的地理配准精度,甚至更高。%不丹getestet。 Diese测试了系统的系统性能Fehler的像素模型,以及Bildern的Georeferenzierung von Dildern的二元模型。

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