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Highly scalable wavelet-based video codec for very low bit-rate environment

机译:高度可扩展的基于小波的视频编解码器,用于非常低的比特率环境

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We introduce a highly scalable video compression system for very low bit-rate videoconferencing and telephony applications around 10-30 kbits/s. The video codec first performs a motion-compensated three-dimensional (3-D) wavelet (packet) decomposition of a group of video frames, and then encodes the important wavelet coefficients using a new data structure called tri-zerotrees (TRI-ZTR). Together, the proposed video coding framework forms an extension of the original zero tree idea of Shapiro (1992) for still image compression. In addition, we also incorporate a high degree of video scalability into the codec by combining the layered/progressive coding strategy with the concept of embedded resolution block coding. With scalable algorithms, only one original compressed video bit stream is generated. Different subsets of the bit stream can then be selected at the decoder to support a multitude of display specifications such as bit rate, quality level, spatial resolution, frame rate, decoding hardware complexity, and end-to-end coding delay. The proposed video codec also allows precise bit rate control at both the encoder and decoder, and this can be achieved independently of the other video scaling parameters. Such a scheme is very useful for both constant and variable bit rate transmission over mobile communication channels, as well as video distribution over heterogeneous multicast networks. Finally, our simulations demonstrated comparable objective and subjective performance when compared to the ITU-T H.263 video coding standard, while providing both multirate and multiresolution video scalability.
机译:我们推出了高度可扩展的视频压缩系统,用于10-30 kbits / s的低比特率视频会议和电话应用。视频编解码器首先对一组视频帧执行运动补偿的三维(3-D)小波(数据包)分解,然后使用称为三零树(TRI-ZTR)的新数据结构对重要的小波系数进行编码。总之,提出的视频编码框架形成了Shapiro(1992)最初的零树思想的静态图像压缩扩展。此外,我们还将分层/渐进式编码策略与嵌入式分辨率块编码的概念相结合,将高度的视频可伸缩性纳入了编解码器。使用可伸缩算法,仅生成一个原始的压缩视频比特流。然后可以在解码器中选择比特流的不同子集以支持多种显示规范,例如比特率,质量级别,空间分辨率,帧率,解码硬件复杂性和端到端编码延迟。所提出的视频编解码器还允许在编码器和解码器两者上进行精确的比特率控制,并且这可以独立于其他视频缩放参数来实现。这样的方案对于通过移动通信信道的恒定和可变比特率传输以及通过异构多播网络的视频分发都是非常有用的。最后,与ITU-T H.263视频编码标准相比,我们的仿真展示了可比的客观和主观性能,同时提供了多速率和多分辨率视频可扩展性。

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