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Motion Compensation Via Redundant-Wavelet Multihypothesis

机译:通过冗余小波多假设进行运动补偿

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Multihypothesis motion compensation has been widely used in video coding with previous attention focused on techniques employing predictions that are diverse spatially or temporally. In this paper, the multihypothesis concept is extended into the transform domain by using a redundant wavelet transform to produce multiple predictions that are diverse in transform phase. The corresponding multiple-phase inverse transform implicitly combines the phase-diverse predictions into a single spatial-domain prediction for motion compensation. The performance advantage of this redundant-wavelet-multihypothesis approach is investigated analytically, invoking the fact that the multiple-phase inverse involves a projection that significantly reduces the power of a dense-motion residual modeled as additive noise. The analysis shows that redundant-wavelet multihypothesis is capable of up to a 7-dB reduction in prediction-residual variance over an equivalent single-phase, single-hypothesis approach. Experimental results substantiate the performance advantage for a block-based implementation.
机译:多假设运动补偿已被广泛地用于视频编码中,先前的注意力集中在采用在空间或时间上变化的预测的技术上。在本文中,多假设概念通过使用冗余小波变换扩展到变换域,以产生在变换阶段变化的多个预测。相应的多相逆变换将相异预测隐式组合为一个用于运动补偿的单个空间域预测。对该冗余小波多假设方法的性能优势进行了分析研究,涉及到以下事实:多相逆包含一个投影,该投影显着降低了建模为加性噪声的密集运动残差的功率。分析表明,与等效的单相单假设方法相比,冗余小波多重假设能够将预测残差方差降低7 dB。实验结果证实了基于块的实现的性能优势。

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