基于小波的跳帧转码器结构

K. Fung, W. Siu
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引用次数: 1

摘要

提出了一种新的基于小波的多点视频会议跳帧转码处理结构。该工作涉及基于小波的视频编码器和转码器的新结构。视频转码器从基于小波的视频编码器产生的视频比特流中提取运动活动信息。利用所提出的小波域跳帧处理,可以实现时域可扩展性。使用视频组合器可以很容易地调整非活动子序列的视频质量。这是通过丢弃比特流的精细细节或在小波域中执行帧跳变来实现的。换句话说,可以将更多的比特重新分配给活动子序列,以获得良好的视觉质量和平滑的运动。此外,视频编码器是基于区域的,因此不同的小波核可以用于前景和背景。一方面,这种设置可以显著降低计算复杂度。另一方面,考虑到不同区域的不平等重要性,前景对象的高视频质量始终得到保证,同时即使在低比特率环境下也可以保持可接受的背景质量。由于视频转码器只需要根据其运动活动重新排列视频质量级别或在小波域进行跳帧,因此与使用转码方法的传统视频合并器相比,可以显著节省计算复杂度。然后使用新的视频编码器和转码器来实现多点视频会议系统。本文最后给出了实验结果,实验结果表明,所提出的体系结构在性能上有很好的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architecture of wavelet-based frame skipping transcoder
A new architecture of wavelet based frame skipping transcoding process for multipoint video conferencing is proposed in this paper. The work involves new structures for a video coder and a transcoder which are wavelet-based. The video transcoder extracts information of motion activities from the video bitstream produced by a wavelet-based video coder. Using the proposed frame skipping process in the wavelet domain, temporal scalability can be achieved. The video quality of inactive sub-sequences can be easily adjusted using the video combiner. This is achieved by discarding fine details of the bitstream or performing frame skipping in the wavelet domain. In other words, more bits can be reallocated to active sub-sequences to achieve a good visual quality with smooth motion. In addition, the video coder is region-based so that different wavelet kernels can be used for the foreground and background. This setting can, on one hand, reduce the computational complexity significantly. On the other hand, by considering unequal importance of various regions, a high video quality for foreground objects is always guaranteed whilst an acceptable background quality can also be maintained even under low bitrate environments. Since the video transcoder only needs to rearrange the video quality level according to their motion activities or performing frame skipping in wavelet domain, a significant saving in computational complexity can be achieved as compared to the conventional video combiner using transcoding approach. The new video coder and transcoder are then used to realize a multipoint video conferencing system. Experimental results are included at the end of the paper, which show a good improvement in performance due to the proposed architecture.
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