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On Dead-Zone Plus Uniform Threshold Scalar Quantization

机译:关于死区加上统一阈值标量量化

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This paper studies the rate-distortion performance of symmetric scalar quantizers to extend previous work published by the first author. We first provide a theoretical analysis of dead-zone plus uniform threshold quantization (DZ+UTQ) for nearly-uniform-reconstruction quantization (NURQ). The quantization performance is particularly investigated for Generalized Gaussian (such as Laplacian and Gaussian) sources using the squared-error distortion measure. According to the analysis, we note that the rate-distortion optimized quantizer is DZ+UTQ with NURQ for Laplacian sources, and is very similar to a DZ+UTQ for a uniform reconstruction quantizer (URQ). We further provide theoretical analysis of rate-distortion constrained DZ+UTQ with NURQ and URQ to cover other Generalized Gaussian sources and give the rate-distortion performance comparison theoretically between NURQ and URQ for DZ+UTQ. We conclude that a URQ is a near-optimal reconstruction rule for many sources, and that a DZ+UTQ classification rule is an effective classifier for it. URQ can be considered as a sub-optimal case of NURQ; the advantage of URQ being its simpler reconstruction rule. Based on the theoretical findings, a new DZ+UTQ quantization rounding technique for URQ is developed and integrated into recent H.264/AVC reference software to improve its encoding performance. Up to 1.0 dB performance improvement is observed, particularly in the very high bit rate range.
机译:本文研究对称标量量化器的速率失真性能,以扩展第一作者发表的先前工作。我们首先提供死区加统一阈值量化(DZ + UTQ)的理论分析,以实现几乎均匀的重构量化(NURQ)。使用平方误差失真度量,对广义高斯(例如Laplacian和Gaussian)源的量化性能进行了专门研究。根据分析,我们注意到,对于拉普拉斯信源,速率失真优化的量化器是DZ + UTQ和NURQ,并且与统一重建量化器(URQ)的DZ + UTQ非常相似。我们进一步提供了带有NURQ和URQ的速率失真约束DZ + UTQ的理论分析,以涵盖其他广义高斯源,并给出了DZ + UTQ的NURQ和URQ之间的速率失真性能的理论比较。我们得出结论,对于许多源而言,URQ是近乎最佳的重构规则,而DZ + UTQ分类规则是对其的有效分类器。 URQ可被视为NURQ的次优情况; URQ的优势是其更简单的重建规则。基于理论发现,开发了一种新的URQ DZ + UTQ量化舍入技术,并将其集成到最新的H.264 / AVC参考软件中,以提高其编码性能。观察到高达1.0 dB的性能改善,特别是在非常高的比特率范围内。

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