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Hybrid technique for reducing blocking and ringing artifacts in low-bit-rate coding

机译:用于减少低比特率编码中的阻塞和振铃伪影的混合技术

摘要

A power-scalable hybrid technique to reduce blocking and ringing artifacts in low bit-rate block-based video coding is employed in connection with a modified decoder structure. Fast inverse motion compensation is applied directly in the compressed domain, so that the transform (e.g., DCT) coefficients of the current frame can be reconstructed from those of the previous frame. The spatial characteristics of each block is calculated from the DCT coefficients, and each block is classified as either low-activity or high-activity. For each low-activity block, its DC coefficient value and the DC coefficient values of the surrounding eight neighbor blocks are exploited to predict low frequency AC coefficients which reflect the original coefficients before quantization in the encoding stage. The predicted AC coefficients are inserted into the low activity blocks where blocking artifacts are most noticeable. Subject to available resources, this may be followed by spatial domain post-processing, in which two kinds of low-pass filters are adaptively applied, on a block-by-block basis, according to the classification of the particular block. Strong low-pass filtering is applied in low-activity blocks where the blocking artifacts are most noticeable, whereas weak low-pass filtering is applied in high-activity blocks where ringing noise as well as blocking artifacts may exist. In low activity blocks, the blocking artifacts are reduced by one dimensional horizontal and vertical low-pass filters which are selectively applied in either the horizontal and/or vertical direction depending on the locations and absolute values of the predicted AC coefficients. In high activity blocks, de-blocking and de-ringing is conducted by 2- or 3-tap filters, applied horizontally and/or vertically, which makes the architecture simple.
机译:结合改进的解码器结构,采用了可功率缩放的混合技术,以减少基于低比特率块的视频编码中的块效应和振铃效应。快速逆运动补偿直接应用于压缩域中,从而可以从前一帧的变换系数重建当前帧的变换系数(例如,DCT)。根据DCT系数计算每个块的空间特性,并且将每个块分类为低活动性或高活动性。对于每个低活动性块,利用其DC系数值和周围八个相邻块的DC系数值来预测低频AC系数,这些低频AC系数反映了在编码阶段进行量化之前的原始系数。预测的AC系数将插入到低活动性块中,在这些块中,伪像最明显。取决于可用资源,这之后可以进行空间域后处理,其中根据特定块的分类,逐个块地自适应地应用两种低通滤波器。强低通滤波适用于阻塞伪影最明显的低活动性块,而弱低通滤波适用于可能存在振铃噪声和阻塞伪像的高活动性块。在低活动性块中,通过一维水平和垂直低通滤波器来减少块状伪影,该滤波器根据预测的AC系数的位置和绝对值在水平和/或垂直方向上有选择地应用。在高活动块中,通过水平和/或垂直应用的2或3抽头滤波器进行解块和去振铃,这使体系结构变得简单。

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