High Throughput Coding of Video Signals

T. Richter, S. Simon
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Abstract

As the resolution of monitors and TVs continue to increase, the available bandwidth between host system and monitor becomes more and more a bottleneck. The Video Electronics Standards Association (VESA) is currently developing standards for screen resolutions beyond 4K and, facing the problem of not having enough bandwidth available on traditional copper wires, contacted the JPEG to develop a low complexity, high-throughput still image coder for lossy transmission of video signals. This article describes two approaches to address this predicament, a simple SPIHT based coded and a Hadamard based embedded codec requiring only minimal buffering at encoder and decoder side, and avoiding any pixel-based feedback loops limiting the operating frequency of hardware implementations. Analyzing the details of both implementations reveals an interesting connection between run-length coding, as found in the progressive mode of traditional JPEG coding, and SPIHT/EZW coding - a technique popular in wavelet based compression techniques.
视频信号的高吞吐量编码
随着显示器和电视分辨率的不断提高,主机系统和显示器之间的可用带宽越来越成为瓶颈。视频电子标准协会(VESA)目前正在制定4K以上屏幕分辨率的标准,并面临传统铜线带宽不足的问题,他们联系了JPEG,以开发一种低复杂度、高吞吐量的静态图像编码器,用于视频信号的有损传输。本文描述了解决这种困境的两种方法,一种是基于SPIHT的简单编码,另一种是基于Hadamard的嵌入式编解码器,在编码器和解码器端只需要最小的缓冲,并且避免了任何基于像素的反馈循环,限制了硬件实现的工作频率。分析这两种实现的细节,可以发现在传统JPEG编码的渐进式模式中发现的运行长度编码和SPIHT/EZW编码之间的有趣联系,SPIHT/EZW编码是基于小波的压缩技术中流行的一种技术。
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