The correspondence framework for 3D surface matching algorithms

Beyond the inherent technical challenges, current research into the three dimensional surface correspondence problem is hampered by a lack of uniform terminology, an abundance of application specific algorithms, and the absence of a consistent model for comparing existing approaches and developing n...

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Published inComputer vision and image understanding Vol. 97; no. 3; pp. 347 - 383
Main Authors Planitz, B.M., Maeder, A.J., Williams, J.A.
Format Journal Article
LanguageEnglish
Published San Diego, CA Elsevier Inc 01.03.2005
Elsevier
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Online AccessGet full text
ISSN1077-3142
1090-235X
DOI10.1016/j.cviu.2004.08.001

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Abstract Beyond the inherent technical challenges, current research into the three dimensional surface correspondence problem is hampered by a lack of uniform terminology, an abundance of application specific algorithms, and the absence of a consistent model for comparing existing approaches and developing new ones. This paper addresses these challenges by presenting a framework for analysing, comparing, developing, and implementing surface correspondence algorithms. The framework uses five distinct stages to establish correspondence between surfaces. It is general, encompassing a wide variety of existing techniques, and flexible, facilitating the synthesis of new correspondence algorithms. This paper presents a review of existing surface correspondence algorithms, and shows how they fit into the correspondence framework. It also shows how the framework can be used to analyse and compare existing algorithms and develop new algorithms using the framework’s modular structure. Six algorithms, four existing and two new, are implemented using the framework. Each implemented algorithm is used to match a number of surface pairs. Results demonstrate that the correspondence framework implementations are faithful implementations of existing algorithms, and that powerful new surface correspondence algorithms can be created.
AbstractList Beyond the inherent technical challenges, current research into the three dimensional surface correspondence problem is hampered by a lack of uniform terminology, an abundance of application specific algorithms, and the absence of a consistent model for comparing existing approaches and developing new ones. This paper addresses these challenges by presenting a framework for analysing, comparing, developing, and implementing surface correspondence algorithms. The framework uses five distinct stages to establish correspondence between surfaces. It is general, encompassing a wide variety of existing techniques, and flexible, facilitating the synthesis of new correspondence algorithms. This paper presents a review of existing surface correspondence algorithms, and shows how they fit into the correspondence framework. It also shows how the framework can be used to analyse and compare existing algorithms and develop new algorithms using the framework’s modular structure. Six algorithms, four existing and two new, are implemented using the framework. Each implemented algorithm is used to match a number of surface pairs. Results demonstrate that the correspondence framework implementations are faithful implementations of existing algorithms, and that powerful new surface correspondence algorithms can be created.
Author Planitz, B.M.
Williams, J.A.
Maeder, A.J.
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Issue 3
Keywords Correspondence
Object recognition
Surface matching
Registration
Three dimensional model
Image matching
Correspondence principle
Pattern recognition
Language English
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Snippet Beyond the inherent technical challenges, current research into the three dimensional surface correspondence problem is hampered by a lack of uniform...
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SubjectTerms Applied sciences
Artificial intelligence
Computer science; control theory; systems
Correspondence
Exact sciences and technology
Object recognition
Pattern recognition. Digital image processing. Computational geometry
Registration
Surface matching
Title The correspondence framework for 3D surface matching algorithms
URI https://dx.doi.org/10.1016/j.cviu.2004.08.001
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