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Fully scalable video coding using redundant-wavelet multihypothesis and motion-compensated temporal filtering.

机译:使用冗余小波多假设和运动补偿时间滤波的完全可扩展视频编码。

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摘要

In this dissertation, a fully scalable video coding system is proposed. This system achieves full temporal, resolution, and fidelity scalability by combining mesh-based motion-compensated temporal filtering, multihypothesis motion compensation, and an embedded 3D wavelet-coefficient coder. The first major contribution of this work is the introduction of the redundant-wavelet multihypothesis paradigm into motion-compensated temporal filtering, which is achieved by deploying temporal filtering in the domain of a spatially redundant wavelet transform. A regular triangle mesh is used to track motion between frames, and an affine transform between mesh triangles implements motion compensation within a lifting-based temporal transform. Experimental results reveal that the incorporation of redundant-wavelet multihypothesis into mesh-based motion-compensated temporal filtering significantly improves the rate-distortion performance of the scalable coder. The second major contribution is the introduction of a sliding-window implementation of motion-compensated temporal filtering such that video sequences of arbitrary length may be temporally filtered using a finite-length frame buffer without suffering from severe degradation at buffer boundaries. Finally, as a third major contribution, a novel 3D coder is designed for the coding of the 3D volume of coefficients resulting from the redundant-wavelet based temporal filtering. This coder employs an explicit estimate of the probability of coefficient significance to drive a nonadaptive arithmetic coder, resulting in a simple software implementation. Additionally, the coder offers the possibility of a high degree of vectorization particularly well suited to the data-parallel capabilities of modern general-purpose processors or customized hardware. Results show that the proposed coder yields nearly the same rate-distortion performance as a more complicated state-of-the-art coefficient coder.
机译:本文提出了一种完全可扩展的视频编码系统。该系统通过结合基于网格的运动补偿时间滤波,多假设运动补偿和嵌入式3D小波系数编码器,实现了完整的时间,分辨率和保真度可伸缩性。这项工作的第一个主要贡献是将冗余小波多假设范例引入了运动补偿的时间滤波,这是通过在空间冗余小波变换的域中部署时间滤波来实现的。正则三角形网格用于跟踪帧之间的运动,网格三角形之间的仿射变换可在基于提升的时间变换内实现运动补偿。实验结果表明,将冗余小波多假设结合到基于网格的运动补偿时间滤波中,可以显着提高可伸缩编码器的速率失真性能。第二个主要贡献是引入了运动补偿时间滤波的滑动窗口实现,从而可以使用有限长度的帧缓冲器对任意长度的视频序列进行时间滤波,而不会在缓冲器边界处遭受严重的劣化。最后,作为第三主要贡献,设计了一种新颖的3D编码器,用于对基于冗余小波的时间滤波所产生的3D系数体积进行编码。该编码器采用系数有效度的显式估计来驱动非自适应算术编码器,从而实现了简单的软件实现。此外,编码器还提供了高度矢量化的可能性,特别适合现代通用处理器或定制硬件的数据并行功能。结果表明,所提出的编码器可产生与更复杂的最新系数编码器几乎相同的速率失真性能。

著录项

  • 作者

    Wang, Yonghui.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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