Title :
Markerless real-time garment retexturing from monocular 3D reconstruction
Author :
Cushen, George A. ; Nixon, Mark S.
Author_Institution :
Univ. of Southampton, Southampton, UK
Abstract :
We present a fusion of augmented reality (AR) and virtual try on (VTO) that incorporates sparse 3D point recovery by exploiting distance constraints based on 2D point correspondences between a deformed texture in monocular video and a reference texture which is derived from the start of the sequence by face detection aided segmentation. A hierarchical and multi-resolution surface reconstruction approach is proposed, employing thin-plate splines, cloth modeling, and patch tessellation. Our method attempts to accurately recover a rectangular surface from a deformed arbitrarily shaped texture. We also propose a hue-based method for segmenting garment cloth and printed texture. The methods are demonstrated in an AR framework for real-time visualization of a virtual garment worn in a real scene. Real-time AR cloth retexturing from monocular vision is a state-of-the-art field. Previous work lacks realism and accuracy, only recovering the 2D cloth layout and lacks robustness, requiring a special T-shirt color and simple texture along with lab hardware. Our approach alleviates these limitations. We design a practical approach which considers a typical consumer environment with a mid-range PC and webcam. Our results are convincing and photorealistic with robustness to arbitrary T-shirts, subjects, and backgrounds. Future work will focus on extending our global model and quantitative analysis.
Keywords :
augmented reality; clothing industry; image reconstruction; image texture; production engineering computing; real-time systems; 2D cloth layout; 3D point recovery; AR; T-shirt color; VTO; augmented reality; face detection aided segmentation; image texture; markerless real-time garment retexturing; monocular 3D reconstruction; monocular video; real-time visualization; shape recognition; virtual garment; virtual try on; Clothing; Image color analysis; Image segmentation; Lighting; Real time systems; Surface reconstruction; Three dimensional displays;
Conference_Titel :
Signal and Image Processing Applications (ICSIPA), 2011 IEEE International Conference on
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4577-0243-3
DOI :
10.1109/ICSIPA.2011.6144142