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    • 36-Issue 2
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    kDet: Parallel Constant Time Collision Detection for Polygonal Objects

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    v36i2pp131-141.pdf (3.613Mb)
    Date
    2017
    Author
    Weller, René
    Debowski, Nicole
    Zachmann, Gabriel ORCID
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    Abstract
    We define a novel geometric predicate and a class of objects that enables us to prove a linear bound on the number of intersecting polygon pairs for colliding 3D objects in that class. Our predicate is relevant both in theory and in practice: it is easy to check and it needs to consider only the geometric properties of the individual objects - it does not depend on the configuration of a given pair of objects. In addition, it characterizes a practically relevant class of objects: we checked our predicate on a large database of real-world 3D objects and the results show that it holds for all but the most pathological ones. Our proof is constructive in that it is the basis for a novel collision detection algorithm that realizes this linear complexity also in practice. Additionally, we present a parallelization of this algorithm with a worst-case running time that is independent of the number of polygons. Our algorithm is very well suited not only for rigid but also for deformable and even topology-changing objects, because it does not require any complex data structures or pre-processing. We have implemented our algorithm on the GPU and the results show that it is able to find in real-time all colliding polygons for pairs of deformable objects consisting of more than 200k triangles, including self-collisions.
    BibTeX
    @article {10.1111:cgf.13113,
    journal = {Computer Graphics Forum},
    title = {{kDet: Parallel Constant Time Collision Detection for Polygonal Objects}},
    author = {Weller, René and Debowski, Nicole and Zachmann, Gabriel},
    year = {2017},
    publisher = {The Eurographics Association and John Wiley & Sons Ltd.},
    ISSN = {1467-8659},
    DOI = {10.1111/cgf.13113}
    }
    URI
    http://dx.doi.org/10.1111/cgf.13113
    https://diglib.eg.org:443/handle/10.1111/cgf13113
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    Eurographics Association copyright © 2013 - 2023 
    Send Feedback | Contact - Imprint | Data Privacy Policy | Disable Google Analytics
    Theme by @mire NV
    System hosted at  Graz University of Technology.
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