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Prediction of Zero Quantized DCT Coefficients in H.264/AVC Using Hadamard Transformed Information

机译:使用Hadamard变换信息预测H.264 / AVC中零量化DCT系数

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This paper presents an efficient approach for detecting zero quantized discrete cosine transform (ZQDCT) coefficients using the sum of absolute transformed difference (SATD). Previously, all the ZQDCT prediction approaches employ the sum of absolute difference (SAD) available ahead of DCT and quantization (Q) for early detection. However, when the Hadamard transform is enabled for H.264/AVC encoding, only the SATD instead of SAD is available before DCT and Q, and all the prediction approaches can not be directly applied. To solve this problem, the Gaussian distribution is applied to study the integer 4x4 DCT coefficients in H.264/AVC and hence an adaptive scheme with multiple thresholds against SATD is derived to realize different types of DCT and Q implementations. In addition, another two SATD based sufficient conditions are proposed for early detecting zero quantized DC coefficients for the luma components encoded with the intra 16 times 16 mode and the chroma components. The experimental results demonstrate that the proposed approach can greatly reduce the DCT and Q computations and obtain almost the same rate-distortion performance as the original encoder.
机译:本文提出了一种使用绝对变换差(SATD)之和检测零量化离散余弦变换(ZQDCT)系数的有效方法。以前,所有ZQDCT预测方法都采用DCT之前可用的绝对差之和(SAD)和量化(Q)进行早期检测。但是,当启用Hadamard变换以进行H.264 / AVC编码时,在DCT和Q之前只有SATD而不是SAD可用,并且所有预测方法都无法直接应用。为了解决这个问题,应用高斯分布来研究H.264 / AVC中的整数4x4 DCT系数,因此推导了针对SATD的具有多个阈值的自适应方案,以实现不同类型的DCT和Q实现。另外,提出了另外两个基于SATD的充分条件,用于为以帧内16乘16模式编码的亮度分量和色度分量及早检测零量化DC系数。实验结果表明,该方法可以大大减少DCT和Q的计算,并获得与原始编码器几乎相同的速率失真性能。

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