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Biorthogonal wavelet transform based image fusion using absolute maximum fusion rule

机译:基于绝对最大融合规则的基于双正交小波变换的图像融合

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摘要

The objective of image fusion is to combine relevant information from two or more images of the same scene into a single composite image which is more informative and is more suitable for human and machine perception. In recent past, different methods of image fusion have been proposed in literature both in spatial domain and wavelet domain. Spatial domain based methods produce spatial distortions in the fused image. Spatial domain distortion can be well handled by the use of wavelet transform based image fusion methods. In this paper, we propose a pixel-level image fusion scheme using multiresolution Biorthogonal wavelet transform (BWT). Wavelet coefficients at different decomposion levels are fused using absolute maximum fusion rule. Two important properties wavelet symmetry and linear phase of BWT have been exploited for image fusion because they are capable to preserve edge information and hence reducing the distortions in the fused image. The performance of the proposed method have been extensively tested on several pairs of multifocus and multimodal images both free from any noise and in presence of additive white Gaussian noise and compared visually and quantitatively against existing spatial domain methods. Experimental results show that the proposed method improves fusion quality by reducing loss of significant information available in individual images. Fusion factor, entropy and standard deviation are used as quantitative quality measures of the fused image.
机译:图像融合的目的是将来自同一场景的两个或更多图像的相关信息组合到一个合成图像中,该合成图像的信息量更大,更适合于人和机器的感知。近年来,文献中在空间域和小波域中都提出了不同的图像融合方法。基于空间域的方法会在融合图像中产生空间失真。通过使用基于小波变换的图像融合方法,可以很好地处理空间域失真。在本文中,我们提出了一种使用多分辨率双正交小波变换(BWT)的像素级图像融合方案。使用绝对最大融合规则对不同分解级别的小波系数进行融合。 BWT的两个重要属性小波对称性和线性相位已被用于图像融合,因为它们能够保留边缘信息并因此减少融合图像中的失真。所提出的方法的性能已经在几对多聚焦和多模态图像上进行了广泛测试,这些图像既没有任何噪声,又没有加性高斯白噪声,并且在视觉和定量上与现有空间域方法进行了比较。实验结果表明,该方法通过减少单个图像中可用的重要信息的丢失来提高融合质量。融合因子,熵和标准偏差用作融合图像的定量质量度量。

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