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Efficient Graph Field Integrators Meet Point Clouds
by
Chaturvedi, Snigdha
, Likhosherstov, Valerii
, Parshakova, Tetiana
, Lin, Han
, Pan, Alvin
, Zhao, Yunfan
, Dubey, Avinava
, Choromanski, Krzysztof
, Zhang, Tianyi
, Watkins, David
, Berger, Eli
, Sehanobish, Arijit
, Somnath Basu Roy Chowdhury
, Weller, Adrian
, Jain, Deepali
, Sarlos, Tamas
in
Algorithms
/ Empirical analysis
/ Euclidean geometry
/ Finite element method
/ Formability
/ Graph theory
/ Graphical representations
/ Graphs
/ Interpolation
/ Multipoles
/ Shortest-path problems
2023
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Efficient Graph Field Integrators Meet Point Clouds
by
Chaturvedi, Snigdha
, Likhosherstov, Valerii
, Parshakova, Tetiana
, Lin, Han
, Pan, Alvin
, Zhao, Yunfan
, Dubey, Avinava
, Choromanski, Krzysztof
, Zhang, Tianyi
, Watkins, David
, Berger, Eli
, Sehanobish, Arijit
, Somnath Basu Roy Chowdhury
, Weller, Adrian
, Jain, Deepali
, Sarlos, Tamas
in
Algorithms
/ Empirical analysis
/ Euclidean geometry
/ Finite element method
/ Formability
/ Graph theory
/ Graphical representations
/ Graphs
/ Interpolation
/ Multipoles
/ Shortest-path problems
2023
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Do you wish to request the book?
Efficient Graph Field Integrators Meet Point Clouds
by
Chaturvedi, Snigdha
, Likhosherstov, Valerii
, Parshakova, Tetiana
, Lin, Han
, Pan, Alvin
, Zhao, Yunfan
, Dubey, Avinava
, Choromanski, Krzysztof
, Zhang, Tianyi
, Watkins, David
, Berger, Eli
, Sehanobish, Arijit
, Somnath Basu Roy Chowdhury
, Weller, Adrian
, Jain, Deepali
, Sarlos, Tamas
in
Algorithms
/ Empirical analysis
/ Euclidean geometry
/ Finite element method
/ Formability
/ Graph theory
/ Graphical representations
/ Graphs
/ Interpolation
/ Multipoles
/ Shortest-path problems
2023
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Paper
Efficient Graph Field Integrators Meet Point Clouds
2023
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Overview
We present two new classes of algorithms for efficient field integration on graphs encoding point clouds. The first class, SeparatorFactorization(SF), leverages the bounded genus of point cloud mesh graphs, while the second class, RFDiffusion(RFD), uses popular epsilon-nearest-neighbor graph representations for point clouds. Both can be viewed as providing the functionality of Fast Multipole Methods (FMMs), which have had a tremendous impact on efficient integration, but for non-Euclidean spaces. We focus on geometries induced by distributions of walk lengths between points (e.g., shortest-path distance). We provide an extensive theoretical analysis of our algorithms, obtaining new results in structural graph theory as a byproduct. We also perform exhaustive empirical evaluation, including on-surface interpolation for rigid and deformable objects (particularly for mesh-dynamics modeling), Wasserstein distance computations for point clouds, and the Gromov-Wasserstein variant.
Publisher
Cornell University Library, arXiv.org
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