Abstract:
Screen content coding have been supported recently in Versatile Video Coding (VVC) to improve the coding efficiency of screen content videos by adopting new coding modes ...Show MoreMetadata
Abstract:
Screen content coding have been supported recently in Versatile Video Coding (VVC) to improve the coding efficiency of screen content videos by adopting new coding modes which are dedicated to screen content video compression. Two new coding modes called Intra Block Copy (IBC) and Palette (PLT) are introduced. However, the flexible quad-tree plus multi-type tree (QTMT) coding structure for coding unit (CU) partitioning in VVC makes the fast algorithm of the SCC particularly challenging. To efficiently reduce the computational complexity of SCC in VVC, we propose a deep learning based fast prediction network, namely FastSCCNet, where a fully convolutional network (FCN) is designed. CUs are classified into natural content block (NCB) and screen content block (SCB). With the use of FCN, only one shot inference is needed to classify the block types of the current CU and all corresponding sub-CUs. After block classification, different subsets of coding modes are assigned according to the block type, to accelerate the encoding process. Compared with the conventional SCC in VVC, our proposed FastSCCNet reduced the encoding time by 29.88% on average, with negligible bitrate increase under all-intra configuration. To the best of our knowledge, it is the first approach to tackle the computational complexity reduction for SCC in VVC.
Published in: 2020 IEEE International Conference on Visual Communications and Image Processing (VCIP)
Date of Conference: 01-04 December 2020
Date Added to IEEE Xplore: 29 December 2020
ISBN Information:
ISSN Information:
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- IEEE Keywords
- Index Terms
- Fully Convolutional Network ,
- Screen Content ,
- Versatile Video Coding ,
- Screen Content Coding ,
- Fast Mode Decision ,
- Computational Complexity ,
- Coding Efficiency ,
- Negligible Increase ,
- Video Coding ,
- Fast Network ,
- Video Compression ,
- Computational Complexity Reduction ,
- Encoding Time ,
- Coding Unit ,
- Convolutional Neural Network ,
- Convolutional Layers ,
- Feature Maps ,
- Semantic Segmentation ,
- Quantization Parameter ,
- Fast Approach ,
- Expansive Path ,
- Output Label ,
- Deconvolutional Layers ,
- Calls For Proposals ,
- Biomedical Image Segmentation ,
- Concatenated Feature Map
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Fully Convolutional Network ,
- Screen Content ,
- Versatile Video Coding ,
- Screen Content Coding ,
- Fast Mode Decision ,
- Computational Complexity ,
- Coding Efficiency ,
- Negligible Increase ,
- Video Coding ,
- Fast Network ,
- Video Compression ,
- Computational Complexity Reduction ,
- Encoding Time ,
- Coding Unit ,
- Convolutional Neural Network ,
- Convolutional Layers ,
- Feature Maps ,
- Semantic Segmentation ,
- Quantization Parameter ,
- Fast Approach ,
- Expansive Path ,
- Output Label ,
- Deconvolutional Layers ,
- Calls For Proposals ,
- Biomedical Image Segmentation ,
- Concatenated Feature Map
- Author Keywords