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Satellite image resolution enhancement using discrete wavelet transform and new edge-directed interpolation

机译:使用离散小波变换和新的边沿定向插值技术增强卫星图像分辨率

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摘要

An image resolution enhancement approach based on discrete wavelet transform (DWT) and new edge-directed interpolation (NEDI) for degraded satellite images by geometric distortion to correct the errors in image geometry and recover the edge details of directional high-frequency subbands is proposed. The observed image is decomposed into four frequency subbands through DWT, and then the three high-frequency subbands and the observed image are processed with NEDI. To better preserve the edges and remove potential noise in the estimated high-frequency subbands, an adaptive threshold is applied to process the estimated wavelet coefficients. Finally, the enhanced image is reconstructed by applying inverse DWT. Four criteria are introduced, aiming to better assess the overall performance of the proposed approach for different types of satellite images. A public satellite images data set is selected for the validation purpose. The visual and quantitative results show the superiority of the proposed approach over the conventional and state-of-the-art image resolution enhancement techniques. (C) 2017 SPIE and IS&T
机译:提出了一种基于离散小波变换(DWT)和新的边缘定向插值法(NEDI)的降级卫星图像几何畸变增强方法,以校正图像几何误差并恢复定向高频子带的边缘细节。通过DWT将观察到的图像分解为四个频率子带,然后使用NEDI对三个高频子带和观察到的图像进行处理。为了更好地保留边缘并消除估计的高频子带中的潜在噪声,将自适应阈值应用于处理估计的小波系数。最终,通过应用逆DWT来重建增强图像。引入了四个标准,旨在更好地评估针对不同类型的卫星图像所提出的方法的整体性能。选择公共卫星图像数据集以进行验证。视觉和定量结果表明,所提出的方法优于常规和最新的图像分辨率增强技术。 (C)2017 SPIE和IS&T

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