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Comparison between high-resolution restoration techniques of atmospherically distorted images

机译:大气畸变图像高分辨率复原技术的比较

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摘要

A system approach is applied to overcome atmospheric degradation of remotely sensed images. A comparison is presented between different filtering techniques for restoration of distorted images for both the visible and thermal IR spectral regions. Restoration methods include spatial and spatial frequency filters. Best results are obtained by using a fractal model to describe the image's power spectral density for scenes in the visible spectral range. Atmospheric effects are best modeled by a noisy spatial frequency filter composed of an average component described by the average atmospheric and hardware modulation transfer function and a noisy component modeled by the atmospheric point spread function's power spectral density. The most impressive restorations in the visible range are achieved by combining the last model and the fractal model for the object's power spectral density. In the thermal range, however, several restoration techniques yielded very good results, with no one technique the most advantageous. The methods presented here are capable of yielding real-time image restoration with the resolution essentially limited by only the hardware in both wavelength regions.
机译:应用一种系统方法来克服遥感图像的大气退化。在可见光和热红外光谱区域的失真图像恢复的不同滤波技术之间进行了比较。恢复方法包括空间和空间频率滤波器。通过使用分形模型描述可见光谱范围内场景的图像功率谱密度,可以获得最佳结果。最佳的大气效应模型是由一个噪声空间频率滤波器建模的,该滤波器由一个由平均大气和硬件调制传递函数描述的平均分量和一个由大气点扩展函数的功率谱密度建模的噪声分量组成。通过结合最后一个模型和分形模型来获得物体的功率谱密度,可以在可见光范围内获得最令人印象深刻的修复效果。但是,在热范围内,几种修复技术产生了很好的结果,没有一种技术是最有利的。本文介绍的方法能够实现实时图像恢复,其分辨率基本上仅受两个波长区域中的硬件限制。

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