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A High-performance Architecture Of Motion Adaptive De-interlacing With Reliable Interfield Information

机译:具有可靠场间信息的高性能运动自适应去隔行架构

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摘要

Scene changes occur frequently in film broadcasting, and tend to destabilize the performance with blurred, jagged, and artifacts effects when de-interlacing methods are utilized. This paper presents an efficient VLSI architecture of video de-interlacing with considering scene change to improve the quality of video results. This de-interlacing architecture contains three main parts. The first is scene change detection, which is designed based on examining the absolute pixel difference value of two adjacent even or odd fields. The second is background index mechanism for classifying motion and non-motion pixels of input field. The third component, spatial-temporal edge-based median filter, is used to deal with the interpolation for those motion pixels. Comparing with the existed de-interlacing approaches, our architecture design can significantly ameliorate the PSNRs of the video sequences with various scene changes; for other situations, it also maintains better performances. The proposed architecture has been implemented as a VLSI chip based on UMC 0.18-μm CMOS technology process. The total gate count is 30114 and its layout area is about 710 × 710-μm. The power consumption is 39.78 mW at working frequency 128.2 MHz, which is able to process de-interlacing for HDTV in real-time.
机译:在电影广播中,场景变化经常发生,当使用去隔行扫描方法时,往往会破坏表演的稳定性,产生模糊、锯齿状和伪影效果。该文提出一种高效的视频去隔行VLSI架构,并考虑场景变化,以提高视频结果质量。这种去隔行架构包含三个主要部分。第一种是场景变化检测,它是在检查两个相邻的偶数或奇数场的绝对像素差值的基础上设计的。第二种是背景索引机制,用于对输入场的运动和非运动像素进行分类。第三个组件是基于时空边缘的中值滤波器,用于处理这些运动像素的插值。与现有的去隔行方法相比,我们的架构设计可以显著改善各种场景变化下视频序列的PSNR;对于其他情况,它也保持了更好的性能。所提出的架构已实现为基于UMC 0.18μm CMOS技术工艺的VLSI芯片。总栅极数为 30114,其布局面积约为 710 × 710 μm。工作频率为128.2 MHz时功耗为39.78 mW,能够实时处理HDTV的去隔行扫描。

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