A Fractional Motion Estimation IP Design with Adaptive Mode Selection
碩士 === 國立中正大學 === 資訊工程所 === 98 === The IP design of fractional motion estimation with adaptive mode selection is proposed in this thesis. Fractional motion estimation (FME) searches sub-pixels for blocks of various sizes to find out the best matching candidate, which improves the compression efficie...
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ndltd-TW-098CCU053920702015-10-13T18:25:32Z http://ndltd.ncl.edu.tw/handle/07576095260590106342 A Fractional Motion Estimation IP Design with Adaptive Mode Selection 具動態模式選擇之分數型移動估測矽智財設計 Chih-Chuan Yang 楊致全 碩士 國立中正大學 資訊工程所 98 The IP design of fractional motion estimation with adaptive mode selection is proposed in this thesis. Fractional motion estimation (FME) searches sub-pixels for blocks of various sizes to find out the best matching candidate, which improves the compression efficiency but leads to high computational complexity. In this paper, we propose a low complexity FME design supporting adaptive mode selection (AMS). Exploiting both the mode correlation among neighboring macroblocks and integer motion estimation result, we can select FME modes adaptively to reduce complexity with good video quality. The simulation result shows that the average number of processing modes in FME is reduced to be 2 for HD1080 video instead of processing 7 modes in JM reference software. With tiny PSNR drop (~0.026dB), the proposed design achieves 71% reduction in computational complexity when compared to JM14.2. At operating frequency of 300MHz, the proposed design could support the real-time processing for H.264 videos with resolution up to QFHD@30fps. none 郭峻因 2010 學位論文 ; thesis 48 en_US |
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碩士 === 國立中正大學 === 資訊工程所 === 98 === The IP design of fractional motion estimation with adaptive mode selection is proposed in this thesis. Fractional motion estimation (FME) searches sub-pixels for blocks of various sizes to find out the best matching candidate, which improves the compression efficiency but leads to high computational complexity. In this paper, we propose a low complexity FME design supporting adaptive mode selection (AMS). Exploiting both the mode correlation among neighboring macroblocks and integer motion estimation result, we can select FME modes adaptively to reduce complexity with good video quality. The simulation result shows that the average number of processing modes in FME is reduced to be 2 for HD1080 video instead of processing 7 modes in JM reference software. With tiny PSNR drop (~0.026dB), the proposed design achieves 71% reduction in computational complexity when compared to JM14.2. At operating frequency of 300MHz, the proposed design could support the real-time processing for H.264 videos with resolution up to QFHD@30fps.
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none Chih-Chuan Yang 楊致全 |
author |
Chih-Chuan Yang 楊致全 |
spellingShingle |
Chih-Chuan Yang 楊致全 A Fractional Motion Estimation IP Design with Adaptive Mode Selection |
author_sort |
Chih-Chuan Yang |
title |
A Fractional Motion Estimation IP Design with Adaptive Mode Selection |
title_short |
A Fractional Motion Estimation IP Design with Adaptive Mode Selection |
title_full |
A Fractional Motion Estimation IP Design with Adaptive Mode Selection |
title_fullStr |
A Fractional Motion Estimation IP Design with Adaptive Mode Selection |
title_full_unstemmed |
A Fractional Motion Estimation IP Design with Adaptive Mode Selection |
title_sort |
fractional motion estimation ip design with adaptive mode selection |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/07576095260590106342 |
work_keys_str_mv |
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