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Over-constraints detection and resolution in geometric equation systems

Article dans une revue avec comité de lecture
Auteur
HU, Hao
ccPERNOT, Jean-Philippe
543315 Laboratoire d’Ingénierie des Systèmes Physiques et Numériques [LISPEN]
ccKLEINER, Mathias
303092 Arts et Métiers Paristech ENSAM Aix-en-Provence

URI
http://hdl.handle.net/10985/16997
Date
2017
Journal
Computer-Aided Design

Résumé

This paper proposes an original decision-support approach to address over-constrained geometric configurations in Computer-Aided Design. It focuses particularly on the detection and resolution of redundant and conflicting constraints when deforming free-form surfaces made of NURBS patches. Based on a series of structural decompositions coupled with numerical analyses, the proposed approach handles both linear and non-linear constraints. The structural decompositions are particularly efficient because of the local support property of NURBS. Since the result of this detection process is not unique, several criteria are introduced to drive the designer in identifying which constraints should be removed to minimize the impact on his/her original design intent. Thus, even if the kernel of the algorithm works on equations and variables, the decision is taken by considering the user-specified geometric constraints. The method is illustrated on academic and industrial examples realized with our prototype software.

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  • Laboratoire d’Ingénierie des Systèmes Physiques Et Numériques (LISPEN)

Documents liés

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  • On the detection of over-constrained subparts of configurations when deforming free-form curves 
    Communication avec acte
    HU, Hao; ccPERNOT, Jean-Philippe; ccKLEINER, Mathias (2016)
    Today, designers use CAD modelers to define and modify NURBS surfaces involved in the design of complex shapes like car bodies or turbine blades. The generated shapes often result from the use of variational modeling ...
  • Geometric Over-Constraints Detection: A Survey 
    Article dans une revue avec comité de lecture
    HU, Hao; ZHANG, Chao; HUANG, Yanjia; ZHAO, Qian; YEUNG, Sunny; ccPERNOT, Jean-Philippe; ccKLEINER, Mathias (Springer Science and Business Media LLC, 2021-05-11)
    Currently, geometric over-constraints detection is of major interest in several diferent felds. In terms of product development process (PDP), many approaches exist to compare and detect geometric over-constraints, to ...
  • SMA-Net: Deep learning-based identification and fitting of CAD models from point clouds 
    Article dans une revue avec comité de lecture
    HU, Sijie; ccPOLETTE, Arnaud; ccPERNOT, Jean-Philippe (Springer Science and Business Media LLC, 2022-04-13)
    Identifcation and ftting is an important task in reverse engineering and virtual/augmented reality. Compared to the traditional approaches, carrying out such tasks with a deep learning-based method have much room to ...
  • Thermoreflectance temperature measurement with millimeter wave 
    Article dans une revue avec comité de lecture
    PRADERE, Christophe; CAUMES, Jean-Pascal; BENKHEMIS, S.; ccPERNOT, Jean-Philippe; PALOMO, Elena; DILHAIRE, S.; BATSALE, Jean-Christophe (American Institute of Physics, 2014)
    GigaHertz (GHz) thermoreflectance technique is developed to measure the transient temperature of metal and semiconductor materials located behind an opaque surface. The principle is based on the synchronous detection, using ...
  • Parts internal structure definition using lattice patterns optimization for mass reduction in additive manufacturing 
    Communication avec acte
    CHOUGRANI, Laurent; ABED, Stéphane; ccPERNOT, Jean-Philippe; ccVERON, Philippe (2016)
    With the rise of additive manufacturing, complex internal structure optimization is now a relevant topic. Additive manufacturing allows designers and engineers to go further in their modeling, designing and optimization ...

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