广播应用的高质量实时VBR MPEG-2系统

Zahir, Leung
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引用次数: 4

摘要

提出了一种高质量可变比特率(VBR) MPEG- 2编码方案,可提供最佳的视频质量和带宽分配。该方案易于实现,为涉及多个视频源复用分发的广播应用提供了一种非常有效的实时VBR解决方案。可变比特率(VBR)视频比恒定比特率(CBR)视频的优点是,无论视频内容如何,它都能保持图像质量,并提供最佳带宽分配,以便在给定带宽上传输潜在的更多多路VBR流。文献中已经报道了几种不同的多视频源统计复用实现和使用VBR流的带宽分配优化。然而,VBR流的生成并没有得到应有的重视。在许多情况下,VBR流要么通过使用固定的量化水平和多路复用控制器获得,要么通过假设多层实现MPEG压缩标准获得。这些“非真实”的VBR流并不完全依赖于图像质量,因此不能很好地代表实际广播应用中发现的VBR分布。在视频制作和实时广播应用中,快速的场景变化和过度的运动增加了连续帧之间的差异,从而对视频的感知质量产生了非常负面的影响。为了克服这个问题,调整“标准帧序列”是必要的,以便适应精确表示相邻帧之间剧烈变化所需的额外信息。我们开发了一种方法,可以根据视频内容自动调整帧序列和表示每帧所需的比特数。其结果是视频质量的显著提高。我们的方法使用一个大的30帧GOP,它允许有效的重新分配比特,同时引入三帧的最大延迟。比特的重新分配是基于每帧信噪比、量化和运动活动信息的“智能”组合。大的30帧GOP往往有大量的低运动帧,这些帧被ow算法“饿死”,从而为更活跃的帧序列节省了比特。此外,我们的方法在场景剪切中强制使用I帧,从而在GOP中引入多个I帧,并防止由于快速变化而导致的损伤长时间传播。虽然比特率可以对每个GOP保持恒定,但GOP大小的增加与我们的智能比特再分配相结合,会产生伪VBR流效果,从而大大提高视频质量。性能评估表明,对于相同的图像质量,我们的方法将压缩率提高了至少25%。我们的编码器生成的视频流在现有的所有硬件和软件MPEG-1和MPEG-2播放器上都能成功地播放。一个真正的VBR MPEG.2系统
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A High Quality Real Time VBR MPEG-2 System For Broadcasting Appucations
A high quality variable bit rate (VBR) MPEG- 2 encoding scheme that offers optimum video quality and bandwidth allocation is presented. The proposed scheme is very easy to implement and offers a very efficient real time VBR solution for broadcasting applications that involve multiplexed distribution of multiple video sources. A High Quality Pseudo VBR MPEG Encoding Process The advantage of variable bit rate (VBR) video over constant bit rate (CBR) is that it preserves picture quality regardless of the video content and offers optimum bandwidth allocation so that a potentially greater number of multiplexed VBR streams may be transmitted over a given bandwidth. Several different implementations of statistical multiplexing of multiple video sources and optimization of bandwidth allocation using VBR streams have been reported in the literature. However, the generation of VBR streams has not received the attention it deserves. In many cases, VBR streams are either obtained by using fixed quantization levels and multiplexing controllers or by assuming multi-layer implementations of the MPEG compression standard. These "non-true" VBR streams do not depend entirely on picture quality and thus do not closely represent the VBR distribution that is found in actual broadcasting applications. In video production and real-time broadcasting applications, rapid scene changes and excessive motion increase the differences between consecutive frames and as a result have a very negative impact in the perceived quality of the video. To overcome this problem, adjustment of the "standard frame sequence is necessary in order to accommodate for the extra information needed to accurately represent drastic changes between adjacent frames. We developed a method which automatically adjusts the frame sequence and the number of bits needed to represent each frame depending on the video content. The result is a significant improvement in video quality. Our method uses a large 30 frame GOP which allows for efficient redistribution of bits while introducing maximum delay of three frames. Redistribution of bits is based on a "smart" combination of SNR, quantization and motion activity information for each frame. Large 30 frame GOP's tend to have a significant number of low motion frames which are "starved" by ow algorithm thus saving bits for more active frame sequences. In addition, I frames are forced by our method on scene cuts thus introducing more than one I frame within a GOP and preventing long propagation of impairments due to rapid changes. Although the bit rate can be kept constant for every GOP, the increase of the GOP size in combination with our smart redistribution of bits generates a pseudo VBR stream effect which results in considerable improvements in video quality. Performance evaluations have shown that for the same picture quality our method improves the compression rate by at least 25%. The video streams generated by our encoder were successfully played back by all the existing hardware and software MPEG-1 and MPEG-2 players. A Real Tie VBR MPEG.2 System
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