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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Super-Resolution Image Reconstruction Using Wavelet Based Patch and Discrete Wavelet Transform
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Super-Resolution Image Reconstruction Using Wavelet Based Patch and Discrete Wavelet Transform

机译:基于小波修补和离散小波变换的超分辨率图像重建

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This paper proposes a novel method that combines the discrete wavelet transform (DWT) and example-based technique to reconstruct a high-resolution from a low-resolution image. Although previous interpolation- and example-based methods consider the reconstruction adaptive to edge directions, they still have a problem with aliasing and blurring effects around edges. In order to address these problems, in this paper, we utilize the frequency sub-bands of the DWT that has the feature of lossless compression. Our proposed method first extracts the frequency sub-bands (Low-Low, Low-High, High-Low, High-High) from an input low-resolution image by the DWT, and then the low-resolution image is inserted into the Low-Low sub-band. Since information in high-frequency sub-bands (Low-High, High-Low, and High-High) might be lost in the low-resolution image, they are reconstructed or estimated by using example-based method from image patch database. After that, we make a high-resolution image by performing the inverse DWT of reconstructed frequency sub-bands. In experimental results, we can show that the proposed method outperforms previous approaches in terms of edge enhancement, reduced aliasing effects, and reduced blurring effects.
机译:本文提出了一种结合离散小波变换(DWT)和基于示例的技术从低分辨率图像重建高分辨率的新方法。尽管先前的基于插值和基于示例的方法认为重构适用于边缘方向,但是它们仍然存在边缘附近的混叠和模糊效果的问题。为了解决这些问题,在本文中,我们利用具有无损压缩功能的DWT的子频带。我们提出的方法首先通过DWT从输入的低分辨率图像中提取频率子带(低-低,低-高,高-低,高-高),然后将低分辨率图像插入到低-低子带。由于低分辨率图像中高频子带(低-高,高-低和高-高)中的信息可能会丢失,因此可以使用基于实例的方法从图像补丁数据库中重构或估计它们。之后,我们通过执行重构的子频带的逆DWT来制作高分辨率图像。在实验结果中,我们可以证明,该方法在边缘增强,减少的混叠效果和减少的模糊效果方面优于以前的方法。

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