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SPOT5: first in-flight Radiometric Image Quality results

机译:Spot5:第一飞行中的辐射图像质量结果

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The SPOT5 remote sensing satellite was launched in May 2002. It provides SPOT service continuity above and beyond SPOT4 operation but the SPOT5 system also significantly improves the SPOT service with the new characteristics of its two HRG (High Resolution Geometry) cameras and its HRS (High Resolution Stereo) camera. SPOT5's first two months of life in orbit were dedicated to instrument calibration and the assessment of image quality performances. During this period, the CNES team used specific target programming to compute image correction parameters and estimate the performance of the image processing chain, at system level. This paper focuses on the relative radiometric performances of the different spectral bands for the three instruments, deduced from in-flight measurements. For each spectral band, a radiometric model gives the ratio between detector response and input radiance. This model takes the architecture of the onboard image chain into account. Calibration provides the normalisation parameters (dark currents and relative inter-detector sensitivities) used to correct the images. The quality of the corrected images is quantified through several signal-to-noise ratio measurements based on different techniques. These methods are presented and their accuracy is discussed. Finally, a comparison is given between flight measurements and ground measurements.
机译:The Spot5遥感卫星在2002年5月推出。它提供以上和超出Spot4操作的现货服务连续性,但Spot5系统也显着提高了其两个HRG(高分辨率几何)摄像机及其HRS的新特性(高分辨率立体声)相机。 Spot5在轨道中的前两个月的生命致力于仪器校准和图像质量表演的评估。在此期间,CNES团队使用特定的目标编程来计算图像校正参数并在系统级别估计图像处理链的性能。本文重点介绍了从飞行中推断出三种仪器的不同光谱带的相对辐射性能。对于每个光谱频带,辐射模型给出了检测器响应和输入光线之间的比率。该模型考虑了船上图像链的体系结构。校准提供了用于校正图像的归一化参数(暗电流和相对检测器互联敏感性)。通过基于不同技术的若干信噪比测量来量化校正图像的质量。提出了这些方法,并讨论了它们的准确性。最后,在飞行测量和地面测量之间给出了比较。

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