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Multiscale Image Fusion Using the Undecimated Wavelet Transform With Spectral Factorization and Nonorthogonal Filter Banks

机译:使用带频谱分解的非抽取小波变换和非正交滤波器组进行多尺度图像融合

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Multiscale transforms are among the most popular techniques in the field of pixel-level image fusion. However, the fusion performance of these methods often deteriorates for images derived from different sensor modalities. In this paper, we demonstrate that for such images, results can be improved using a novel undecimated wavelet transform (UWT)-based fusion scheme, which splits the image decomposition process into two successive filtering operations using spectral factorization of the analysis filters. The actual fusion takes place after convolution with the first filter pair. Its significantly smaller support size leads to the minimization of the unwanted spreading of coefficient values around overlapping image singularities. This usually complicates the feature selection process and may lead to the introduction of reconstruction errors in the fused image. Moreover, we will show that the nonsubsampled nature of the UWT allows the design of nonorthogonal filter banks, which are more robust to artifacts introduced during fusion, additionally improving the obtained results. The combination of these techniques leads to a fusion framework, which provides clear advantages over traditional multiscale fusion approaches, independent of the underlying fusion rule, and reduces unwanted side effects such as ringing artifacts in the fused reconstruction.
机译:多尺度变换是像素级图像融合领域中最流行的技术之一。但是,这些方法的融合性能通常会因来自不同传感器模态的图像而变差。在本文中,我们证明了对于此类图像,可以使用基于新的未抽取小波变换(UWT)的融合方案来改善结果,该方案将图像分解过程分为两个连续的滤波操作(使用分析滤镜的频谱分解)。实际融合发生在与第一个滤波器对卷积之后。其显着较小的支撑尺寸可将系数值在重叠图像奇点周围的不希望有的散布降到最低。这通常会使特征选择过程复杂化,并可能导致在融合图像中引入重建误差。此外,我们将表明,UWT的非二次采样性质允许设计非正交的滤波器组,它对于融合期间引入的伪像更加健壮,从而进一步改善了获得的结果。这些技术的组合导致了融合框架,该融合框架提供了优于传统多尺度融合方法的明显优势,而与基础的融合规则无关,并减少了诸如融合重建中的振铃伪影之类的不良副作用。

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