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A DCT-based spatially adaptive post-processing technique to reducethe blocking artifacts in transform coded images

机译:基于DCT的空间自适应后处理技术,可减少变换编码图像中的块状伪像

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摘要

We propose a discrete cosine transform (DCT)-based post-processing technique to alleviate the blocking artifacts in transform coded images. In our approach, the high-frequency components, mainly caused by the edge components, are examined through two steps. First, two adjacent homogeneous blocks from the block boundary are found, where the homogeneous block is defined as the block in which no adjacent pixels' difference is larger than the difference of the block boundary. Second, the local frequency characteristics in the homogeneous block are examined through the DCT. Then, we derive the relation between the DCT coefficients of two homogeneous blocks of different sizes. By considering the information about the original edge and the relation, we can detect the high-frequency components, mainly caused by the blocking artifact. The performance of the proposed technique is evaluated on both still and moving images. The simulation results indicate that the proposed technique reduces the blocking artifacts effectively and preserves the original edges faithfully, and its performance is very robust to the degree of degradation in the decoded images
机译:我们提出了一种基于离散余弦变换(DCT)的后处理技术,以减轻变换编码图像中的块状伪影。在我们的方法中,主要由边缘分量引起的高频分量通过两个步骤进行检查。首先,从块边界找到两个相邻的同质块,其中,将同质块定义为其中相邻像素的差不大于块边界之差的块。其次,通过DCT检查同质块中的本地频率特性。然后,我们推导了两个不同大小的同构块的DCT系数之间的关系。通过考虑有关原始边和关系的信息,我们可以检测到主要由阻塞伪影引起的高频分量。在静止图像和运动图像上都评估了所提出技术的性能。仿真结果表明,所提出的技术有效地减少了块状伪像,忠实地保留了原始边缘,其性能对于解码图像的退化程度非常鲁棒。

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