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Adaptive deinterlacing algorithm based on motion compensation

Adaptive deinterlacing algorithm based on motion compensation
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摘要 An adaptive de-interlacing algorithm based on motion compensation is presented. It consists of the detection of motion blocks, the adaptive motion estimation with Kalman filtering, and the motion compensation for motion blocks and field repetition for static blocks. The detection of motion blocks can accurately identify the motion blocks by using successive 4-field images. The motion estimation module with Kalman filtering searches motion vectors only for motion blocks, and the search model is adaptive to motion velocity and acceleration. Two de-interlacing methods are adopted to satisfy the different requirements of motion blocks and static blocks. Compared with full search algorithm, the proposed algorithm greatly reduces the computational amount while keeping the performance approximately. An adaptive de-interlacing algorithm based on motion compensation is presented. It consists of the detection of motion blocks, the adaptive motion estimation with Kalman filtering, and the motion compensation for motion blocks and field repetition for static blocks. The detection of motion blocks can accurately identify the motion blocks by using successive 4-field images. The motion estimation module with Kalman filtering searches motion vectors only for motion blocks, and the search model is adaptive to motion velocity and acceleration. Two de-interlacing methods are adopted to satisfy the different requirements of motion blocks and static blocks. Compared with full search algorithm, the proposed algorithm greatly reduces the computational amount while keeping the performance approximately.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2005年第4期931-936,共6页 系统工程与电子技术(英文版)
基金 ThisprojectwassupportedbytheNationalNaturalScienceFoundationofChina(60202004)andtheKeyProjectofChineseMinistryofEducation(104173).
关键词 de-interlace adaptive motion estimation Kalman filter motion compensation. de-interlace, adaptive motion estimation, Kalman filter, motion compensation.
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