利用WAMM和双三次插值方法改进非下采样contourlet变换域的光谱和空间信息

R. James, M. Vadivel
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引用次数: 0

摘要

泛锐化作为一种广泛应用于遥感图像构建的工具,具有丰富的光谱和空间内容。全色锐化用于提高空间分辨率,并使用高分辨率的单波段图像提供增强的多波段图像可视化。泛锐化的主要目的是使空间内容同时最大化,使处理过程中产生的光谱畸变最小化。有许多实现泛锐化的方法,如主成分分析(PCA)、强度、色调和饱和度(HIS)和小波。这些方法的主要缺点是光谱分辨率的失真。然而,非下采样contourlet-transform (NSCT)方法被证明是有效的。它在表示方向信息和捕获物体的内在几何结构方面也非常有效。它结合了高分辨率、平移不变性和高方向性等特点。本文采用改进的双三次插值法和加权平均合并法(WAMM)。通过使用这些方法,图像更清晰,图像中没有细节软化,从而提高了图像质量。在本文中,与现有方法相比,可以提高图像的频谱和空间效率。使用RGE和Q4等性能指标,通过模拟来评估这些方法的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of spectral and spatial information using WAMM and bi-cubic interpolation method in Non-subsampled contourlet transform domain
Pan-sharpening is widely used as a tool toconstruct remotely sensed image, which is rich in both spectral and spatial contents. Panchromatic sharpening is used to improve the spatial resolution and provide an enhanced visualization of a multiband image using the high-resolutions, single-band image. The main scope of pan-sharpening is to maximize the spatial content simultaneously and minimize the spectral distortions which occur during processing. There are many approaches to implement pan-sharpening like principal component analysis (PCA), Intensity, hue and saturation (HIS), and WAVELET. The main drawback of these approaches is the distortion of spectral resolutions. However, Non-subsampled contourlet-transform (NSCT) approach is proved to be efficient. It is alsovery efficient in representing directional information and to capture intrinsic geometrical structure of the object. It combines features like high resolutions, shift-invariance and high-directionality. In this paper modified bi-cubic interpolation method and weighted average merging method (WAMM) are used. By using these methods the image issharper and there is no softening of details in the image, thus improving the quality. In the proposed paper it is possible to improve the efficiency of an image both spectrally and spatially with better efficiency compared to existing methods. The evaluation of efficiency of these methods is done by simulation, using performance metrics like RGE and Q4.
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