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An efficient all-zero-block detection method for general orthogonal transformations

机译:一种有效的全正交变换全零块检测方法

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摘要

The latest video coding standards achieve high coding gains but result in high complexity. To reduce the computation involved and speed up the encoder, various All- Zero Block (AZB) early detection algorithms are designed to skip transform coding and quantization. In this paper, the orthogonal transformations are analyzed using the Euclid Space theory first, and then the sufficient and necessary conditions for AZB detection and non-AZB detection are derived. Based on sufficient conditions, new features for the refined classification and the corresponding thresholds are found. Finally, a general AZB detection method with a constrained false detection rate is proposed. The proposed detection scheme is applied to the 4x4 and 8x8 transforms in H.264/AVC. The experiment results show that up to 80% of the computations for transform and quantization are saved as compared to those for the encoder without AZB detection1.
机译:最新的视频编码标准实现了较高的编码增益,但导致了较高的复杂性。为了减少涉及的计算并加快编码器的速度,设计了各种全零块(AZB)早期检测算法来跳过变换编码和量化。本文首先利用Euclid空间理论对正交变换进行了分析,然后推导了用于AZB检测和非AZB检测的充分必要条件。基于足够的条件,可以找到用于精细分类的新功能和相应的阈值。最后,提出了一种具有错误检测率受限的常规AZB检测方法。提出的检测方案应用于H.264 / AVC中的4x4和8x8变换。实验结果表明,与没有AZB检测的编码器相比,节省了多达80%的变换和量化计算。

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