PhysicsBasedAnimationToolkit 0.0.10
Cross-platform C++20 library of algorithms and data structures commonly used in computer graphics research on physically-based simulation.
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Bibliography
[1]

Jan Bender, Matthias Müller, and Miles Macklin. Position-Based Simulation Methods in Computer Graphics. In M. Zwicker and C. Soler, editors, EG 2015 - Tutorials. The Eurographics Association, 2015.

[2]

Anka He Chen, Ziheng Liu, Yin Yang, and Cem Yuksel. Vertex block descent. ACM Trans. Graph., 43(4), July 2024.

[3]

Baraff David. Dynamic Simulation of Non-Penetrating Rigid Bodies. PhD thesis, PhD thesis, Cornell University, 1992.

[4]

Mathias Eitz and Gu Lixu. Hierarchical spatial hashing for real-time collision detection. In IEEE International Conference on Shape Modeling and Applications 2007 (SMI '07), pages 61–70, 2007.

[5]

Christer Ericson. Real-time collision detection. Crc Press, 2004.

[6]

Tero Karras. Maximizing parallelism in the construction of bvhs, octrees, and k-d trees. In Proceedings of the Fourth ACM SIGGRAPH / Eurographics Conference on High-Performance Graphics, EGGH-HPG'12, page 33–37, Goslar, DEU, 2012. Eurographics Association.

[7]

George Karypis and Vipin Kumar. Metis: A software package for partitioning unstructured graphs, partitioning meshes, and computing fill-reducing orderings of sparse matrices. 1997.

[8]

Minchen Li, Zachary Ferguson, Teseo Schneider, Timothy Langlois, Denis Zorin, Daniele Panozzo, Chenfanfu Jiang, and Danny M. Kaufman. Incremental potential contact: intersection-and inversion-free, large-deformation dynamics. ACM Trans. Graph., 39(4), August 2020.

[9]

Tiantian Liu, Sofien Bouaziz, and Ladislav Kavan. Quasi-Newton Methods for Real-Time Simulation of Hyperelastic Materials. ACM Trans. Graph., 36(3):23:1–23:16, May 2017.

[10]

B. Müller, F. Kummer, and M. Oberlack. Highly accurate surface and volume integration on implicit domains by means of moment-fitting. International Journal for Numerical Methods in Engineering, 96(8):512–528, 2013.

[11]

Xavier Provot. Collision and self-collision handling in cloth model dedicated to design garments. In Daniel Thalmann and Michiel van de Panne, editors, Computer Animation and Simulation '97, pages 177–189, Vienna, 1997. Springer Vienna.

[12]

Breannan Smith, Fernando De Goes, and Theodore Kim. Stable neo-hookean flesh simulation. ACM Trans. Graph., 37(2), March 2018.

[13]

M. Teschner, S. Kimmerle, B. Heidelberger, G. Zachmann, L. Raghupathi, A. Fuhrmann, M.-P. Cani, F. Faure, N. Magnenat-Thalmann, W. Strasser, and P. Volino. Collision detection for deformable objects. Computer Graphics Forum, 24(1):61–81, 2005.

[14]

Quoc-Minh Ton-That, Paul G. Kry, and Sheldon Andrews. Parallel block neo-hookean xpbd using graph clustering. Computers & Graphics, 110:1–10, 2023.

[15]

Bolun Wang, Zachary Ferguson, Teseo Schneider, Xin Jiang, Marco Attene, and Daniele Panozzo. A large-scale benchmark and an inclusion-based algorithm for continuous collision detection. ACM Trans. Graph., 40(5), September 2021.

[16]

Cem Yuksel. High-performance polynomial root finding for graphics. Proc. ACM Comput. Graph. Interact. Tech., 5(3), July 2022.