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  • 學位論文

H.264/AVC畫面內適應性降取樣壓縮編碼之研究

Study of an Intra Frame Video Coding in H.264/AVC

指導教授 : 林銀議
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摘要


在先前的研究[8]中,畫面基準下的降取樣壓縮編碼提升了H.264/AVC畫面內預測模式效能。我們藉由加入了四分之一降取樣模式和選擇是否加入預測錯誤補償畫面提出了一個畫面基準下最佳適應性降取樣編碼。但是影像畫面會因為畫面內部各區域所含有的特性不同,限制了畫面基準下的降取樣壓縮編碼的效能。因此,我們將降取樣壓縮編碼從畫面基準下應用到區塊基準下,並提出區塊基準下最佳適應性降取樣壓縮編碼。最後實驗結果顯示:相較於先前的研究[8],我們所提出的演算法在畫面基準下平均增加了0.295%到3.09%的位元率增益;而在區塊基準下平均效能則增加了5.352%的位元率增益。

並列摘要


In previous work [8], frame-based down-sampling video coding technique improves efficiency in intra frame of H.264/AVC. An algorithm of frame-based down-sampling video coding is proposed to enhance the efficiency: the quarter mode and not to add prediction error are considered in it. However, frames would limit the efficiency because every region in frame might have a different character. We apply down-sampling video coding technique from frame-based into block-based, proposing a block-based algorithm of down-sampling video coding. The experiments show the frame-based algorithm, comparing with [8], achieves 3.09% of BD-bitrate saving in average, and the block-based algorithm further improves coding performance (5.352% of BD-bitrate saving in average).

並列關鍵字

intra frame video coding H.264/AVC down-sampling

參考文獻


[2] “Video coding for low bit rate communication, version 1,” ITU-T recommendation H.263, 1995.
[6] T. Wiegand, G. J. Sullivan, G. Bjontegaard and A. Luthra, “Overview of the H.264/AVC video coding standard,” IEEE Trans. Circuits Syst. Video Technol., vol. 13, pp. 560-576, Jul. 2003.
[7] J. Y. Lee, J. Lee, H. Wey and D. Park, “A novel coding scheme for intra pictures of H.264/AVC,” in Proc. IEEE ICIP, Dec. 2010, pp. 62-65.
[8] Y. Piao and H. W. Park, “Adptive interpolation-based divide-and-predict intra coding for H.264/AVC,” IEEE Trans. Circuits Syst. Video Technol., vol. 20, pp. 1915-1921, Dec. 2010.
[9] S. Ma, L. Zhang, X. Zhang and W. Gao, “Block adaptive super resolution video coding,” in Proc. IEEE PCM, 2009, LNCS 5879, pp. 1048-1057

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