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A deblocking technique for block-transform compressed image using wavelet transform modulus maxima

机译:小波变换模极大值的块变换压缩图像解块技术

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摘要

We introduce a deblocking algorithm for Joint Photographic Experts Group (JPEG) decoded images using the wavelet transform modulus maxima (WTMM) representation. Under the WTMM representation, we can characterize the blocking effect of a JPEG decoded image as: (1) small modulus maxima at block boundaries over smooth regions; (2) noise or irregular structures near strong edges; and (3) corrupted edges across block boundaries. The WTMM representation not only provides characterization of the blocking effect, but also enables simple and local operations to reduce the adverse effect due to this problem. The proposed algorithm first performs a segmentation on a JPEG decoded image to identify the texture regions by noting that their WTMM have small variation in regularity. We do not process the modulus maxima of these regions, to avoid the image texture being "oversmoothed" by the algorithm. Then, the singularities in the remaining regions of the blocky image and the small modulus maxima at block boundaries are removed. We link up the corrupted edges, and regularize the phase of modulus maxima as well as the magnitude of strong edges. Finally, the image is reconstructed using the projection onto convex set (POCS) technique on the processed WTMM of that JPEG decoded image. This simple algorithm improves the quality of a JPEG decoded image in the senses of the signal-to-noise ratio (SNR) as well as the visual quality. We also compare the performance of our algorithm to the previous approaches, such as CLS and POCS methods. The most remarkable advantage of the WTMM deblocking algorithm is that we can directly process the edges and texture of an image using its WTMM representation.
机译:我们介绍了使用小波变换模量最大值(WTMM)表示的联合图像专家组(JPEG)解码图像的解块算法。在WTMM表示下,我们可以将JPEG解码图像的块效应描述为:(1)平滑区域上块边界处的小模量最大值; (2)强力边缘附近有噪音或不规则结构; (3)跨块边界的边缘损坏。 WTMM表示不仅提供了阻塞效果的特征,而且还可以进行简单且局部的操作以减少由于此问题引起的不利影响。所提出的算法首先对JPEG解码图像执行分割,以通过注意纹理区域的WTMM规则性变化较小来识别纹理区域。我们不会处理这些区域的模数最大值,以免图像纹理被算法“过度平滑”。然后,去除块状图像的其余区域中的奇异性和块边界处的小模量最大值。我们将损坏的边缘连接起来,并规范模数最大值的相位以及强边缘的大小。最终,使用凸凸集投影(POCS)技术在该JPEG解码图像的已处理WTMM上重建图像。这个简单的算法从信噪比(SNR)以及视觉质量的角度提高了JPEG解码图像的质量。我们还将算法的性能与以前的方法(例如CLS和POCS方法)进行比较。 WTMM解块算法最显着的优势是,我们可以使用其WTMM表示直接处理图像的边缘和纹理。

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