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Adaptive De-blocking Filter for Low Bit Rate Applications

机译:低比特率应用的自适应去块滤波器

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摘要

In block-based video compression technology, blocking artifacts are obvious because of the luminance and chrominance discontinuities which are caused by block-based discrete cosine transform (DCT) and motion compensation. As a kind of solution, an in-loop filter has been successfully used in H.264 adapting to quantization parameter and video content. In this paper, blocking artifacts distribution properties are analyzed carefully to reflect the blocking effect more accurately in the low bit rate applications. Two important parameters, named blocking severity and pixel variation, are defined to describe the boundary strength and the gradient of the samples across the edge respectively. Through series of statistical data retrieval and analysis for these parameters using multiple representative video sequences, a novel blocking artifacts distribution model is concluded. Based on this distribution model, an improved filter is proposed to H.264 with novel strength determination rule and different alpha model. Comparing with H.264 anchor results, the proposed de-blocking filter shows better performance especially in subjective aspect, which could be widely used in low bit rate applications.
机译:在基于块的视频压缩技术中,由于亮度和色度的不连续性是由基于块的离散余弦变换(DCT)和运动补偿引起的,因此块状伪影很明显。作为一种解决方案,环路滤波器已成功地应用于H.264,以适应量化参数和视频内容。在本文中,仔细分析了阻塞伪像的分布特性,以在低比特率应用中更准确地反映阻塞效果。定义了两个重要的参数,分别称为阻塞严重性和像素变化,以描述边界强度和样本在边缘上的梯度。通过使用多个代表性视频序列对这些参数进行一系列统计数据检索和分析,得出了一种新颖的块状伪影分布模型。在此分布模型的基础上,提出了一种新颖的强度确定规则和不同的α模型的改进的H.264滤波器。与H.264锚定结果相比,所提出的解块滤波器在主观方面表现出更好的性能,可广泛用于低比特率应用中。

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