A Physicist's View on Partial 3D Shape Matching

被引:1
|
作者
Koehl, Patrice [1 ]
Orland, Henri [2 ]
机构
[1] Univ Calif Davis, Dept Comp Sci, Davis, CA 95616 USA
[2] Univ Paris Saclay, Inst Phys Theor, CEA, CNRS, F-91191 Gif sur yvette, France
基金
美国国家科学基金会;
关键词
optimal transport; shape matching; statistical physics; REPRESENTATION; RECOGNITION; COMPUTATION; SIMILARITY; TRANSPORT; FRAMEWORK; FEATURES; GEOMETRY; TRENDS;
D O I
10.3390/a16070346
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
A new algorithm is presented to compute nonrigid, possibly partial comparisons of shapes defined by unstructured triangulations of their surfaces. The algorithm takes as input a pair of surfaces with each surface given by a distinct and unrelated triangulation. Its goal is to define a possibly partial correspondence between the vertices of the two triangulations, with a cost associated with this correspondence that can serve as a measure of the similarity of the two shapes. To find this correspondence, the vertices in each triangulation are characterized by a signature vector of features. We tested both the LD-SIFT signatures, based on the concept of spin images, and the wave kernel signatures obtained by solving the Shrodinger equation on the triangulation. A cost matrix C is constructed such that C(k,l) is the norm of the difference of the signature vectors of vertices k and l. The correspondence between the triangulations is then computed as the transport plan that solves the optimal transport or optimal partial transport problem between their sets of vertices. We use a statistical physics approach to solve these problems. The presentation of the proposed algorithm is complemented with examples that illustrate its effectiveness and manageable computing cost.
引用
收藏
页数:25
相关论文
共 50 条
  • [1] Signature of Geometric Centroids for 3D Local Shape Description and Partial Shape Matching
    Tang, Keke
    Song, Peng
    Chen, Xiaoping
    COMPUTER VISION - ACCV 2016, PT V, 2017, 10115 : 311 - 326
  • [2] Interactive partial 3D shape matching with geometric distance optimization
    Martinek, Michael
    Grosso, Roberto
    Greiner, Guenther
    VISUAL COMPUTER, 2015, 31 (02) : 223 - 233
  • [3] Isometric 3D Shape Partial Matching Using GD-DNA
    Du, Guo-Guang
    Yin, Cong-Li
    Zhou, Ming-Quan
    Wu, Zhong-Ke
    Fan, Ya-Chun
    Duan, Fu-Qing
    Zhou, Peng-Bo
    JOURNAL OF COMPUTER SCIENCE AND TECHNOLOGY, 2018, 33 (06) : 1178 - 1191
  • [4] Interactive partial 3D shape matching with geometric distance optimization
    Michael Martinek
    Roberto Grosso
    Günther Greiner
    The Visual Computer, 2015, 31 : 223 - 233
  • [5] 3D Shape Matching via Two Layer Coding
    Bai, Xiang
    Bai, Song
    Zhu, Zhuotun
    Latecki, Longin Jan
    IEEE TRANSACTIONS ON PATTERN ANALYSIS AND MACHINE INTELLIGENCE, 2015, 37 (12) : 2361 - 2373
  • [6] 3D Ear Matching Using Local Salient Shape Feature
    Sun, Xiaopeng
    Wang, Guan
    2013 INTERNATIONAL CONFERENCE ON COMPUTER-AIDED DESIGN AND COMPUTER GRAPHICS (CAD/GRAPHICS), 2013, : 377 - 378
  • [7] Efficient descriptor for full and partial shape matching
    Bouagar, Saliha
    Larabi, Slimane
    MULTIMEDIA TOOLS AND APPLICATIONS, 2016, 75 (06) : 2989 - 3011
  • [8] 3D Ear Shape Matching Using Joint α-Entropy
    Sun, Xiao-Peng
    Li, Si-Hui
    Han, Feng
    Wei, Xiao-Peng
    JOURNAL OF COMPUTER SCIENCE AND TECHNOLOGY, 2015, 30 (03) : 565 - 577
  • [9] Shape-Based Depth Image to 3D Model Matching and Classification with Inter-View Similarity
    Wohlkinger, Walter
    Vincze, Markus
    2011 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, 2011,
  • [10] Shape modeling and matching in identifying 3D protein structures
    Abeysinghe, Sasakthi
    Ju, Tao
    Baker, Matthew L.
    Chiu, Wah
    COMPUTER-AIDED DESIGN, 2008, 40 (06) : 708 - 720