自适应双向时间递归插值去隔行

J. Kovacevic, R. Safranek, E. Yeh
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引用次数: 0

摘要

只提供摘要形式。有必要找到一个好的去隔行(扫描格式转换)系统,因为,例如,目前可用的摄像机是隔行的,美国高清电视大联盟已经提出了一个包含隔行和逐行扫描格式的建议。另一方面,在接下来的几年里,地方广播电台将发现他们接收的视频材料可能是高清电视质量的,逐步扫描的,而他们的新闻/广告仍然是NTSC制作的(隔行扫描)。我们在Nguyen和Dubois算法的基础上开发了一种新的去隔行算法(参见Proc. Int)。高清电视讲习班,1992年11月)。它使用空间和时间方法的加权组合来插值缺失的像素。该算法是自适应的,因为它根据它们引入的误差对各种处理块进行加权。实验在“真实世界”和计算机生成的视频序列上进行。将结果与作为光线追踪器输出的“原始”结果以及AT&T HDTV组提供的参考算法进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive bidirectional time-recursive interpolation for deinterlacing
Summary form only given. There exists a need for finding a good deinterlacing (scan format conversion) system, since, for example, current available cameras are interlaced and the US HDTV Grand Alliance has put forward a proposal containing both interlaced and progressive scanning formats. On the other hand, over the next few years, the local broadcasting stations will find themselves in the position of receiving video material that could be HDTV quality, progressively scanned, while their news/commercials are still NTSC produced (interlaced scanning). We have developed a new algorithm for deinterlacing based on the algorithm of Nguyen and Dubois (see Proc. Int. Workshop on HDTV, November 1992). It interpolates the missing pixels using a weighted combination of spatial and temporal methods. The algorithm is self-adaptive, since it weights various processing blocks based on the error they introduce. Experiments were run on both "real-world" and computer generated video sequences. The results were compared to the "original" obtained as an output of the ray-tracer, as well as to the reference algorithm provided by the AT&T HDTV group.
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