标题: | 整合式解交错演算法之设计 An Intrgrated De-interlacing Algorithm Design |
作者: | 曾坤源 Kun -Yuan Tseng 杭学鸣 Hsueh Ming Hang 电机学院电子与光电学程 |
关键字: | 整合式解交错;移动估计;移动向量平滑处理;移动补偿;Motion Compensation;Motion Estimation;Motion Vector Smoothing;Motion Compensation |
公开日期: | 2004 |
摘要: | 在最近几年,数位电视已经开始播放和循序扫描的输出显示装置已普及一般家庭,因此将交错扫描转换成循序扫描的解交错(De-interlacing)演算法就变得相当重要,虽然移动可适性解交错(Motion Adaptive De-interlacing)的演算法已经广泛应用在现今许多的商品上,但在某些移动区域的画质仍有需要再提升。 本篇论文提出的整合式解交错(Integrated De-interlacing)的演算法,可以有效提升移动区域的画面,但是当移动估计不正确时,反而会使移动补偿后的画面变得很差,为了改善这种情况,因此结合移动可适性解交错的优点,并将空间图场内插(Spatial Interpolation)的方式改成ELA(Edge Line Average)来设计,经过电脑模拟的结果发现,不仅在视觉上提高画面的解析度,在某些影像峰值讯号杂讯比(Peak Signal Noise Ratio , PSNR)也比线平均解交 错(Line Average De-interlacing)多出好几分贝的画质增益。 此外,在整合式解交错演算法中也增加影片侦测(Film Detection)和影像加强(Image Enhancement)的演算法设计,在这样演算法的架构下,透过影片侦测的演算法,我们可真实地还原3:2 Pull Down的影片格式,而不会有锯齿状(Saw-Toothed)的画面出现,而影像加强的演算法,则可以在解交错后,经过影像的调整,使输出画面呈现不同的效果,达到消费者的需求。 In recent years, progressive scanning output devices have becoming very popular. However, many video sources are still using the conventional interlaced TV format. Therefore, the de-interlacing technique which converts interlaced picture to progressive picture is essential. It has been used widely in various kinds of commercial products. But the conventional simple de-interlacing method does not provide good picture quality particularly in the moving areas. The main theme of this thesis is an integrated de-interlacing system, which incorporates several known and improved techniques in a nice manner to produce good de-interlaced image quality. We first develop an accurate motion detector that classifies image regions into stationary, low-motion, and high-motion categories. The simple field merging method is applied to the stationary regions. The edge line average interpolation method is applied to the slow-motion regions. Finally, the motion-compensated interpolation is applied to the high-motion regions. In addition, hierarchical motion estimation and motion vector smoothing techniques are employed to enhance the quality of estimated motion vectors. Our computer simulation shows that the subjective image quality is improved by using the proposed scheme. Also, its PSNR measures are better than the conventional spatial or temporal interpolation schemes. In addition, in real applications, interlaced TV pictures are often derived from the films at different frame rate. To achieve a good picture quality, a film detector and an associated image enhancement scheme are added to our de-interlacing system. In this proposed system architecture, we can recover the 3:2 pull down format. With image enhancement algorithm after de-interlacing, the subjective image quality is generally improved. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009067529 http://hdl.handle.net/11536/41179 |
显示于类别: | Thesis |
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