Mode-Dependent Transforms for Coding Directional Intra Prediction Residuals
The use of mode-dependent transforms for coding directional intra prediction residuals has been previously shown to provide coding gains, but the transform matrices have to be derived from training. In this paper, we derive a set of separable mode-dependent transforms by using a simple separable, di...
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Published in | IEEE transactions on circuits and systems for video technology Vol. 22; no. 4; pp. 545 - 554 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
New York, NY
IEEE
01.04.2012
Institute of Electrical and Electronics Engineers |
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Abstract | The use of mode-dependent transforms for coding directional intra prediction residuals has been previously shown to provide coding gains, but the transform matrices have to be derived from training. In this paper, we derive a set of separable mode-dependent transforms by using a simple separable, directional, and anisotropic image correlation model. Our analysis shows that only one additional transform, the odd type-3 discrete sine transform (ODST-3), is required for the optimal implementation of mode-dependent transforms. In addition, the four-point ODST-3 also has a structure that can be exploited to reduce the operation count of the transform operation. Experimental results show that in terms of coding efficiency, our proposed approach matches or improves upon the performance of a mode-dependent transforms approach that uses transform matrices obtained through training. |
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AbstractList | The use of mode-dependent transforms for coding directional intra prediction residuals has been previously shown to provide coding gains, but the transform matrices have to be derived from training. In this paper, we derive a set of separable mode-dependent transforms by using a simple separable, directional, and anisotropic image correlation model. Our analysis shows that only one additional transform, the odd type-3 discrete sine transform (ODST-3), is required for the optimal implementation of mode-dependent transforms. In addition, the four-point ODST-3 also has a structure that can be exploited to reduce the operation count of the transform operation. Experimental results show that in terms of coding efficiency, our proposed approach matches or improves upon the performance of a mode-dependent transforms approach that uses transform matrices obtained through training. |
Author | Zhengguo Li Rahardja, S. Yih Han Tan Chuohao Yeo |
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Keywords | Video coding Performance evaluation Image processing Multipoint method transforms HEVC Discrete sine transform Implementation Video signal processing Learning Image coding Transform coding Residual impurity Gain |
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References | tanizawa (ref18) 2010 bjntegaard (ref26) 2001 ref12 ref11 ref10 bossen (ref27) 2011 (ref3) 2010 ref1 ref19 wiegand (ref28) 2011 yueh (ref23) 2005; 5 ref24 budagavi (ref16) 2010 joshi (ref14) 2011 ref25 ref22 ref21 yang (ref17) 2010 (ref2) 2010 wiegand (ref9) 2011 saxena (ref15) 2011 ref8 ref7 saxena (ref20) 2010 yeo (ref13) 2010 ref4 ref6 ref5 |
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SubjectTerms | Applied sciences Coding, codes Correlation Covariance matrix Encoding Exact sciences and technology HEVC Image coding Image processing Information, signal and communications theory Predictive models Signal and communications theory Signal processing Telecommunications and information theory Transforms Video coding |
Title | Mode-Dependent Transforms for Coding Directional Intra Prediction Residuals |
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