标题: | 解交错演算法使用平滑条件适应性选择空间与时间的插补 A De-interlacing Algorithm Using Smoothness Constraint for Adaptive Spatiotemporal Interpolations |
作者: | 陈敏正 Ming-Chang Chen 彭文孝 Wen-Hsiao Peng 资讯科学与工程研究所 |
关键字: | 解交错;平滑限制;动作估计;动作向量可靠度;等光线;不连续;De-interlacing;Smoothness Constraint;Isophote;Motion Estimation;Motion Vector Reliability;Discontinuity |
公开日期: | 2008 |
摘要: | 本論文中,我们呈现一个动态选择空间插补与动态补偿的混和式 的解交错演算法。在空间插补的演算法中,我们參考了影像补偿的观 念,等光线,估计出大约的平滑方向且在稍后的步骤中正确的找出与 粗估的最相近的方向。时间插补方法中,动态补偿是主要的时间插补 的结果。在动作估计中,我们增加一个平滑限制的因子使得由动作估 计呈现出动作向量的連续性而且也会产生出较好的动态补偿结果。 为了避免因为错误动作向量所产生的严重区块失真,利用动作向 量能量与自相关函數去侦测哪一个向量是否是错误的。像素值应该与 其相邻的像素有关連性是众所周知的。把像素基础的亮度的关聯性转 换成以区块基础的动作向量,我们引用了兩种不連续的類型去估计动 作向量的能量:区域与上下文的不連续。一般而言,大的动作向量能 量值越大表示此向量越不可靠。 在我们的方法中,大量的平滑边与区块失真都被正确的找出。选 择插补的方法依靠动作资讯而不采用空间特性且最后的输出是空间 与时间插补的二分选择。实验的PSNR 數据比现有新颖的演算法至少 有0.5db 的增加。 In this thesis, we present a hybrid de-interlacing algorithm using spatial interpolation and motion compensation. The spatial interpolation refers to the concept of image inpainting, isophote, to estimate smooth direction approximately and then corrected by smoothness factor further. In temporal interpolation, motion compensation (MC) is the major temporal result. In the motion estimation (ME), we add a factor of smoothness constraint to present the continuity of motion vector (MV) and it would produce better motion compensated result. In order to prevent the signi…cant block e□ect caused from erroneous MV, using the energy of MV and autocorrelation function to detect which MV(s) is erroneous. It is well known that pixel value has correlation with its nighborhoods. To translate the correlation from pixel-based intensity value to block-based MV length, we introduce the two types of discontinuity on MV to evaluate the motion vector energy (MVE) of MV: local and contextual discontinuity. Generally, the large measure score of MVE means that the MV is unreliable, vice versa. The significant smooth edges in spatial method and block artifacts in temporal results are recognized correctly. The manner of choosing interpolation depends on the motion information rather than spatial feature and the …nal output is a binary decision between spatial and temporal interpolation. The simulated peak signal-to-noise ratio (PSNR) of proposed algorithm have at least 0.5dB better than other novel de-interlacing algorithms. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009555555 http://hdl.handle.net/11536/39506 |
显示于类别: | Thesis |
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