In search of inliers: 3d correspondence by local and global voting

We present a method for finding correspondence between 3D models. From an initial set of feature correspondences, our method uses a fast voting scheme to separate the inliers from the outliers. The novelty of our method lies in the use of a combination of local and global constraints to determine if...

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Veröffentlicht in:arXiv.org
Hauptverfasser: Buch, Anders Glent, Yang, Yang, Krüger, Norbert, Henrik Gordon Petersen
Format: Paper
Sprache:Englisch
Veröffentlicht: Ithaca Cornell University Library, arXiv.org 23.08.2017
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ISSN:2331-8422
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Abstract We present a method for finding correspondence between 3D models. From an initial set of feature correspondences, our method uses a fast voting scheme to separate the inliers from the outliers. The novelty of our method lies in the use of a combination of local and global constraints to determine if a vote should be cast. On a local scale, we use simple, low-level geometric invariants. On a global scale, we apply covariant constraints for finding compatible correspondences. We guide the sampling for collecting voters by downward dependencies on previous voting stages. All of this together results in an accurate matching procedure. We evaluate our algorithm by controlled and comparative testing on different datasets, giving superior performance compared to state of the art methods. In a final experiment, we apply our method for 3D object detection, showing potential use of our method within higher-level vision.
AbstractList We present a method for finding correspondence between 3D models. From an initial set of feature correspondences, our method uses a fast voting scheme to separate the inliers from the outliers. The novelty of our method lies in the use of a combination of local and global constraints to determine if a vote should be cast. On a local scale, we use simple, low-level geometric invariants. On a global scale, we apply covariant constraints for finding compatible correspondences. We guide the sampling for collecting voters by downward dependencies on previous voting stages. All of this together results in an accurate matching procedure. We evaluate our algorithm by controlled and comparative testing on different datasets, giving superior performance compared to state of the art methods. In a final experiment, we apply our method for 3D object detection, showing potential use of our method within higher-level vision.
Author Krüger, Norbert
Henrik Gordon Petersen
Buch, Anders Glent
Yang, Yang
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Snippet We present a method for finding correspondence between 3D models. From an initial set of feature correspondences, our method uses a fast voting scheme to...
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SubjectTerms Algorithms
Inliers (landforms)
Object recognition
Outliers (statistics)
Three dimensional models
Voters
Voting
Title In search of inliers: 3d correspondence by local and global voting
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