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A Relative Radiometric Correction Method for Airborne Image Using Outdoor Calibration and Image Statistics

机译:基于室外校准和图像统计的机载图像相对辐射校正方法

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The Airborne Hyperspectral Imager (AHI) is a civilian remote sensor made in China, which uses a multichip charge-coupled device (CCD) butting technology to enlarge the frame. With the aging of the sensor, overall nonuniformity and stripe noises are observed. To solve these problems, a new idea of using the outdoor calibration and the image statistics together was developed to correct AHI images. In this method, outdoor calibration was conducted to calculate the relative radiometric calibration coefficient of each CCD detector for correcting the overall nonuniformity of an image. Then, image statistics were used to remove the residual stripes. This paper presents the principle, the experiment, and the results of this method. To validate the effectiveness of the proposed method, it was compared with some other methods and was evaluated by three quality indices. Moreover, the effects of each step of this method were analyzed separately. The experimental results suggest that the proposed method is convenient and practical for the relative radiometric correction of an airborne image.
机译:机载高光谱成像仪(AHI)是中国制造的民用遥感器,它使用多芯片电荷耦合器件(CCD)对接技术来扩大框架。随着传感器的老化,观察到整体不均匀和条纹噪声。为了解决这些问题,开发了一种将室外校准和图像统计数据一起使用以校正AHI图像的新思路。在这种方法中,进行室外校准以计算每个CCD检测器的相对辐射校准系数,以校正图像的整体不均匀性。然后,使用图像统计数据来去除残留条纹。本文介绍了该方法的原理,实验和结果。为了验证该方法的有效性,将其与其他方法进行了比较,并通过三个质量指标进行了评估。此外,分别分析了该方法每个步骤的效果。实验结果表明,所提出的方法对于航空图像的相对辐射校正是方便实用的。

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