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Landsat TM Satellite Image Restoration Using Kalman FIlter

机译:使用卡尔曼滤波器的Landsat TM卫星图像恢复

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Satellites orbit the Earth and obtain continuous imagery of the ground below along their orbital path. The quality of satellite images propagating through the atmosphere is affected by phenomena such as scattering and absorption of light, and turbulence, which degrade the image by blurring it and reducing its contrast. The atmospheric Wiener filter, which corrects for turbulence blur, aerosol blur, and path radiance simultaneously, is implemented in digital restoration of Landsat TM (Thematic Mapper) imagery. Digital restoration results of Landsat TM imagery using the atmospheric Wiener filter were presented in the past. Here, a new approach for digital restoration of Landsat TM is presented by implementing a Kalman filter as an atmospheric filter, which corrects for turbulence blur, aerosol blur, and path radiance simultaneously. Turbulence MTF is calculated from meteorological data or estimated if no meteorological data were measured. Aerosol MTF is consistent with optical depth. The product of the two yields atmospheric MTF, which is implemented in both the atmospheric Wiener and Kalman filters. Restoration improves both smallness of size of resolvable detail and contrast. Restorations are quite apparent even under clear weather conditions. Here, restorations results of the atmospheric Kalman filter are presented along with those for the atmospheric Wiener filter. A way to determine which is the best restoration result and how good is the restored image is presented by a visual comparison and by considering several mathematical criteria. In general the Kalman restoration is superior, and inclusion of turbulence blur also leads to slightly improved restoration.
机译:卫星轨道地球,并沿着轨道路径获得下面地面的连续图像。通过气氛传播的卫星图像的质量受到诸如光的散射和吸收的现象和湍流的影响,这通过模糊并降低图像并降低其对比度。同时纠正湍流模糊,气溶胶模糊和路径光线的大气维纳滤波器在Landsat TM(主题映射器)图像的数字恢复中实现。过去介绍了使用大气维纳滤波器的Landsat TM图像的数字恢复结果。这里,通过将卡尔曼滤波器作为大气过滤器实现卡尔曼滤波器来提出一种新的覆盖Landsat TM的新方法,其校正湍流模糊,气溶胶模糊和路径辐射。湍流MTF由气象数据计算或估计如果没有测量气象数据。气溶胶MTF与光学深度一致。两者的产物产生大气MTF,其在大气中的维纳和卡尔曼过滤器中实施。恢复改善了可解析细节和对比度的小小。即使在清晰的天气条件下,修复也很明显。这里,大气卡尔曼滤波器的修复结果与大气维纳滤波器一起呈现。通过视觉比较来确定哪种方式是最佳恢复结果以及恢复的图像的良好,并考虑了几个数学标准。通常,卡尔曼恢复优越,并且包含湍流模糊也导致恢复略微改善。

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