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Blocking artifacts suppression in block-coded images using overcomplete wavelet representation

机译:使用不完整的小波表示来抑制块编码图像中的块状伪影

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It is well known that at low-bit-rate block discrete cosine transform compressed image exhibits visually annoying blocking and ringing artifacts. In this paper, we propose a noniterative, wavelet-based deblocking algorithm to reduce both types of artifacts. The algorithm exploits the fact that block discontinuities are constrained by the dc quantization interval of the quantization table, as well as the behavior of wavelet modulus maxima evolution across wavelet scales to derive appropriate threshold maps at different wavelet scales. Since ringing artifacts occur near strong edges, which can be located either along block boundaries or within blocks, suppression of block discontinuities does not always reduce ringing artifacts. By exploiting the behavior of ringing artifacts in the wavelet domain, we propose a simple yet effective method for the suppression of such artifacts. The proposed algorithm can suppress both block discontinuities and ringing artifacts effectively while preserving true edges and textural information. Simulation results and extensive comparative study with both iterative and noniterative methods reported in the literature have shown the effectiveness of our algorithm.
机译:众所周知,在低比特率块中,离散余弦变换压缩图像表现出视觉上令人讨厌的块和振铃伪影。在本文中,我们提出了一种基于小波的非迭代解块算法,以减少两种类型的伪像。该算法利用了这样的事实,即块不连续性受量化表的dc量化间隔以及跨小波尺度的小波模量最大值演化行为的限制,从而在不同的小波尺度上获得适当的阈值图。由于振铃伪影发生在可沿着块边界或在块内定位的强边缘附近,因此,抑制块的不连续性并不总是会减少振铃伪影。通过利用小波域中振铃伪影的行为,我们提出了一种简单而有效的方法来抑制此类伪影。所提出的算法可以在保留真实边缘和纹理信息的同时,有效地抑制块不连续和振铃伪影。仿真结果以及文献中报道的使用迭代和非迭代方法进行的广泛比较研究表明,该算法是有效的。

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