DocumentCode
28116
Title
Video Stylization: Painterly Rendering and Optimization With Content Extraction
Author
Liang Lin ; Kun Zeng ; Yizhou Wang ; Ying-Qing Xu ; Song-Chun Zhu
Author_Institution
Sun Yat-Sen Univ., Guangzhou, China
Volume
23
Issue
4
fYear
2013
fDate
Apr-13
Firstpage
577
Lastpage
590
Abstract
We present an interactive video stylization system for transforming an input video into a painterly animation. The system consists of two phases: a content extraction phase to obtain semantic objects, i.e., recognized content, in a video and establish dense feature correspondences, and a painterly rendering phase to select, place, and propagate brush strokes for stylized animations based on the semantic content and object motions derived from the first phase. Compared with the previous work, the proposed method has the following three advantages. First, we propose a two-pass rendering strategy and brush strokes with mixed colors in order to render expressive visual effects. Second, the brush strokes are warped according to global object deformations, so that the strokes appear to be naturally attached to the object surfaces. Third, we propose a deferred rendering and backward completion method to draw brush strokes on emerging regions and simulate a damped system to reduce stroke scintillation effect. Moreover, we discuss the graphics processing unit-based implementation of our system, which is demonstrated to greatly improve the efficiency of producing stylized videos. In experiments, we verify this system by applying it to a number of video clips to produce expressive oil-painting animations and compare it with the state-of-the-art approaches.
Keywords
rendering (computer graphics); scintillation; video signal processing; brush strokes; content extraction; content extraction phase; deferred rendering; input video; interactive video stylization system; oil-painting animations; painterly animation; painterly rendering; stroke scintillation effect; stylized animations; stylized videos; two-pass rendering strategy; video clips; video stylization; Animation; Brushes; Feature extraction; Image color analysis; Image segmentation; Rendering (computer graphics); Semantics; Digital art; graphics processing unit (GPU) processing; painterly animation; temporal coherency; video stylization;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/TCSVT.2012.2210804
Filename
6253236
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