Novel automated methods for coarse and fine registrations of point clouds in high precision metrology
Several measuring systems can be combined to perform accurate assessments at the sub-micrometer level in dimensional metrology. The obtained data are fused into a common coordinate system using registration methods for which the optimal transformation parameters from the common parts of the data cal...
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Published in | International journal of advanced manufacturing technology Vol. 81; no. 5-8; pp. 795 - 810 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
London
Springer London
01.11.2015
Springer Nature B.V Springer Verlag |
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Abstract | Several measuring systems can be combined to perform accurate assessments at the sub-micrometer level in dimensional metrology. The obtained data are fused into a common coordinate system using registration methods for which the optimal transformation parameters from the common parts of the data called correspondences are computed. New original automated coarse and fine registration methods are proposed here using discrete curvatures: an improved Hough transformation method for the coarse registration and three iterative closest point (ICP) variants for the fine registration. The enhancement of Hough consists of exploiting the curvature parameters in order to minimize the basic algorithm complexity. Thus, local transformation parameters are only computed for points presenting similar precalculated surface type. While the rough alignment of the scene data and the model data is thereafter optimized through the fine registration using common ICP algorithm, the first ICP variant includes the curvedness and surface type similarity constraints, especially to reduce the searching area during the matching step. For the proposed second ICP variant, correspondences are searched using a specific distance criterion involving curvature feature similarity measure defined from principal curvatures. The third ICP variant combines both point-to-point and point-to-plane minimizations automatically weighted in the objective function, with the use of moving least squares (MLS) surface technique to determine the corresponding point in point-to-point part. The three developed methods are tested on simulated and real data obtained from a computer tomography (CT) system. The results reveal the benefit of the proposed new automated coarse and fine registration approaches. |
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AbstractList | Several measuring systems can be combined to perform accurate assessments at the sub-micrometer level in dimensional metrology. The obtained data are fused into a common coordinate system using registration methods for which the optimal transformation parameters from the common parts of the data called correspondences are computed. New original automated coarse and fine registration methods are proposed here using discrete curvatures: an improved Hough transformation method for the coarse registration and three iterative closest point (ICP) variants for the fine registration. The enhancement of Hough consists of exploiting the curvature parameters in order to minimize the basic algorithm complexity. Thus, local transformation parameters are only computed for points presenting similar precalculated surface type. While the rough alignment of the scene data and the model data is thereafter optimized through the fine registration using common ICP algorithm, the first ICP variant includes the curvedness and surface type similarity constraints, especially to reduce the searching area during the matching step. For the proposed second ICP variant, correspondences are searched using a specific distance criterion involving curvature feature similarity measure defined from principal curvatures. The third ICP variant combines both point-to-point and point-to-plane minimizations automatically weighted in the objective function, with the use of moving least squares (MLS) surface technique to determine the corresponding point in point-to-point part. The three developed methods are tested on simulated and real data obtained from a computer tomography (CT) system. The results reveal the benefit of the proposed new automated coarse and fine registration approaches. Several measuring systems can be combined to perform accurate assessments at the sub-micrometre level in dimensional metrology. The obtained data are fused into a common coordinate system using registration methods for which the optimal transformation parameters from the common parts of the data called correspondences are computed. New original automated coarse and fine registration methods are proposed here using discrete curvatures: an improved Hough Transformation method for the coarse registration and three Iterative Closest Points (ICP) variants for the fine registration. The enhancement of Hough consists of exploiting the curvature parameters in order to minimize the basic algorithm complexity. Thus local transformation parameters are only computed for points presenting similar precalculated surface type. While the rough alignment of the scene data and the model data is thereafter optimized through the fine registration using commonly ICP algorithm, the first ICP variant includes the curvedness and surface type similarity constraints, especially to reduce the searching area during the matching step. For the proposed second ICP variant, correspondences are searched using a specific distance criterion involving curvature features similarity measure defined from principal curvatures. The third ICP variant combines both point-to-point and point-to-plane minimizations automatically-2-weighted in the objective function, with the use of Moving Least Squares (MLS) surface technique to determine the corresponding point in point-to-point part. The three developed methods are tested on simulated and real data obtained from a computer tomography (CT) system. The results reveal the benefit of the proposed new automated coarse and fine registration approaches. |
Author | Anwer, Nabil Mehdi-Souzani, Charyar Rantoson, Rindra Nouira, Hichem |
Author_xml | – sequence: 1 givenname: Rindra surname: Rantoson fullname: Rantoson, Rindra organization: Laboratoire Commun de Métrologie (LNE-CNAM), Laboratoire National de Métrologie et d’Essais (LNE) – sequence: 2 givenname: Hichem surname: Nouira fullname: Nouira, Hichem email: hichem.nouira@lne.fr organization: Laboratoire Commun de Métrologie (LNE-CNAM), Laboratoire National de Métrologie et d’Essais (LNE) – sequence: 3 givenname: Nabil surname: Anwer fullname: Anwer, Nabil organization: Laboratoire Universitaire de Recherche en Production Automatisée (LURPA), Ecole Normale Supérieure de Cachan, Université Paris Sud – sequence: 4 givenname: Charyar surname: Mehdi-Souzani fullname: Mehdi-Souzani, Charyar organization: Laboratoire Universitaire de Recherche en Production Automatisée (LURPA), Ecole Normale Supérieure de Cachan, Université Paris Sud |
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Cites_doi | 10.1016/j.rcim.2012.07.003 10.1016/j.precisioneng.2014.06.004 10.1016/j.cad.2008.10.012 10.1016/S0168-583X(02)01689-0 10.1145/221659.221672 10.1016/j.patcog.2014.08.027 10.1016/j.cad.2008.10.007 10.1016/0031-3203(81)90009-1 10.1016/j.precisioneng.2014.06.006 10.1016/j.precisioneng.2014.11.011 10.1016/j.cirp.2012.03.021 10.1007/s00170-005-0370-9 10.1007/s00170-009-2447-3 10.1016/0262-8856(92)90076-F 10.1016/j.cirp.2011.05.006 10.1007/s00170-013-5317-y 10.1016/j.cirp.2014.05.011 10.1109/ROBOT.1991.132043 10.1109/ICCV.1995.466840 10.1109/T-C.1975.224087 10.1117/1.OE.51.3.033601 10.1051/ijmqe/2014009 10.1145/777792.777839 10.1007/978-3-540-30541-5_54 10.1109/IM.2001.924423 10.1109/ICYCS.2008.388 |
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Keywords | Measurement errors Moving least squares surface Computational tomography Discrete curvatures Coarse registration Hough transform Fine registration Dimensional metrology fine registration Moving Least Squares Surface Computational Tomography Hough Transform dimensional metrology |
Language | English |
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Snippet | Several measuring systems can be combined to perform accurate assessments at the sub-micrometer level in dimensional metrology. The obtained data are fused... Several measuring systems can be combined to perform accurate assessments at the sub-micrometre level in dimensional metrology. The obtained data are fused... |
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SubjectTerms | Automation CAE) and Design Computation Computed tomography Computer Science Computer simulation Computer-Aided Engineering (CAD Coordinates Curvature Engineering Engineering Sciences Hough transformation Industrial and Production Engineering Iterative algorithms Mathematics Mechanical Engineering Media Management Metrology Order parameters Original Article Registration Similarity Three dimensional models |
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Title | Novel automated methods for coarse and fine registrations of point clouds in high precision metrology |
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