Utilize este identificador para referenciar este registo: http://hdl.handle.net/10071/28161
Autoria: Bastos, R.
Dias, M. S.
Editor: Skala, V.
Data: 1-Jan-2008
Título próprio: Automatic camera pose initialization, using scale, rotation and luminance invariant natural feature tracking
Volume: 16(1-3)
Título e volume do livro: Journal of WSCG
Paginação: 97 - 104
Título do evento: WSCG' 2008: The 16th International Conference in Central Europe on Computer Graphics, Visualization and Computer Vision'2008
Referência bibliográfica: Bastos, R., & Dias, M. S. (2008). Automatic camera pose initialization, using scale, rotation and luminance invariant natural feature tracking. Journal of WSCG, 16(1-3), 97-104.
ISSN: 1213-6972
ISBN: 978-80-86943-14-5
Palavras-chave: Camera pose initialization
Feature detection and tracking
Augmented reality
Texture tracking
Scale invariant
Rotation invariant
Luminance invariant
Resumo: The solution to the camera registration and tracking problem serves Augmented Reality, in order to provide an enhancement to the user’s cognitive perception of the real world and his/her situational awareness. By analyzing the five most representative tracking and feature detection techniques, we have concluded that the Camera Pose Initialization (CPI) problem, a relevant sub-problem in the overall camera tracking problem, is still far from being solved using straightforward and non-intrusive methods. The assessed techniques often use user inputs (i.e. mouse clicking) or auxiliary artifacts (i.e. fiducial markers) to solve the CPI problem. This paper presents a novel approach to real-time scale, rotation and luminance invariant natural feature tracking, in order to solve the CPI problem using totally automatic procedures. The technique is applicable for the case of planar objects with arbitrary topologies and natural textures, and can be used in Augmented Reality. We also present a heuristic method for feature clustering, which has revealed to be efficient and reliable. The presented work uses this novel feature detection technique as a baseline for a real-time and robust planar texture tracking algorithm, which combines optical flow, back projection and template matching techniques. The paper presents also performance and precision results of the proposed technique.
Arbitragem científica: yes
Acesso: Acesso Aberto
Aparece nas coleções:ISTAR-CRI - Comunicações a conferências internacionais

Ficheiros deste registo:
Ficheiro TamanhoFormato 
conferenceobject_42803.pdf480 kBAdobe PDFVer/Abrir


FacebookTwitterDeliciousLinkedInDiggGoogle BookmarksMySpaceOrkut
Formato BibTex mendeley Endnote Logotipo do DeGóis Logotipo do Orcid 

Todos os registos no repositório estão protegidos por leis de copyright, com todos os direitos reservados.