Nothing Special   »   [go: up one dir, main page]

skip to main content
research-article

Efficient yarn-based cloth with adaptive contact linearization

Published: 26 July 2010 Publication History

Abstract

Yarn-based cloth simulation can improve visual quality but at high computational costs due to the reliance on numerous persistent yarn-yarn contacts to generate material behavior. Finding so many contacts in densely interlinked geometry is a pathological case for traditional collision detection, and the sheer number of contact interactions makes contact processing the simulation bottleneck. In this paper, we propose a method for approximating penalty-based contact forces in yarn-yarn collisions by computing the exact contact response at one time step, then using a rotated linear force model to approximate forces in nearby deformed configurations. Because contacts internal to the cloth exhibit good temporal coherence, sufficient accuracy can be obtained with infrequent updates to the approximation, which are done adaptively in space and time. Furthermore, by tracking contact models we reduce the time to detect new contacts. The end result is a 7- to 9-fold speedup in contact processing and a 4- to 5-fold overall speedup, enabling simulation of character-scale garments.

Supplementary Material

JPG File (tp021-10.jpg)
MP4 File (tp021-10.mp4)

References

[1]
An, S. S., Kim, T., and James, D. L. 2008. Optimizing cubature for efficient integration of subspace deformations. ACM SIGGRAPH Asia 27, 5, 164:1--11.
[2]
Baraff, D., and Witkin, A. 1998. Large steps in cloth simulation. ACM SIGGRAPH, 43--54.
[3]
Baraff, D., Witkin, A., and Kass, M. 2003. Untangling cloth. ACM Trans. Graph. 22, 3, 862--870.
[4]
Barbič, J., and James, D. 2005. Real-Time subspace integration for St. Venant-Kirchhoff deformable models. ACM Transactions on Graphics 24, 3 (Aug.), 982--990.
[5]
Bergou, M., Wardetzky, M., Harmon, D., Zorin, D., and Grinspun, E. 2006. A quadratic bending model for inextensible surfaces. In Fourth Eurographics Symposium on Geometry Processing, 227--230.
[6]
Bergou, M., Wardetzky, M., Robinson, S., Audoly, B., and Grinspun, E. 2008. Discrete elastic rods. ACM SIGGRAPH.
[7]
Bergou, M., Audoly, B., Vouga, E., Wardetzky, M., and Grinspun, E. 2010. Discrete viscous threads. ACM SIGGRAPH.
[8]
Bertails, F., Audoly, B., Cani, M.-P., Querleux, B., Leroy, F., and Lévěque, J.-L. 2006. Super-helices for predicting the dynamics of natural hair. ACM Trans. Graph. 25, 3 (August), 1180--1187.
[9]
Bridson, R., Fedkiw, R., and john Anderson. 2002. Robust treatment of collisions, contact and friction for cloth animation. ACM SIGGRAPH, 594--603.
[10]
Bridson, R., Marino, S., and Fedkiw, R. 2003. Simulation of clothing with folds and wrinkles. Symposium on Computer Animation 32, 28--36.
[11]
Chadwick, J. N., An, S. S., and James, D. L. 2009. Harmonic shells: A practical nonlinear sound model for near-rigid thin shells. ACM Transactions on Graphics 28, 5 (Dec.), 119:1--119:10.
[12]
Choi, K., and Ko, H. 2002. Stable but responsive cloth. ACM SIGGRAPH, 604--611.
[13]
Chu, L. 2005. A Framework for Extracting Cloth Descriptors from the Underlying yarn Structure. PhD thesis, University of California, Berkeley.
[14]
Debunne, G., Desbrun, M., Cani, M.-P., and Barr, A. H. 2001. Dynamic real-time deformations using space and time adaptive sampling. ACM SIGGRAPH.
[15]
English, E., and Bridson, R. 2008. Animating developable surfaces using nonconforming elements. ACM SIGGRAPH.
[16]
Etzmuss, O., Keckeisen, M., and Strasser, W. 2003. A fast finite element solution for cloth modelling. In Computer Graphics and Applications, 2003. Proceedings. 11th Pacific Conference on, 244--251.
[17]
Felippa, C. 2000. A systematic approach to the element-independent corotational dynamics of finite elements. Center for Aerospace Structures Document Number CU-CAS-00-03, College of Engineering, University of Colorado.
[18]
Gao, J., Guibas, L. J., and Nguyen, A. 2004. Deformable spanners and applications. Proc. 20th ACM Symp. on Comp. Geom., 179--199.
[19]
Garg, A., Grinspun, E., Wardetzky, M., and Zorin, D. 2007. Cubic Shells. In 2007 ACM SIGGRAPH / Eurographics Symposium on Computer Animation, 91--98.
[20]
Goldenthal, R., Harmon, D., Fattal, R., Bercovier, M., and Grinspun, E. 2007. Efficient simulation of inextensible cloth. ACM SIGGRAPH 26, 3.
[21]
Govindaraju, N. K., Knott, D., Jain, N., Kabul, I., Tamstorf, R., Gayle, R., Lin, M. C., and Manocha, D. 2005. Interactive collision detection between deformable models using chromatic decomposition. ACM Trans. Graph. 24, 3, 991--999.
[22]
Grinspun, E., Krysl, P., and Schröder, P. 2002. CHARMS: A simple framework for adaptive simulation. ACM Transactions on Graphics 21, 281--290.
[23]
Grinspun, E., Hirani, A., Desbrun, M., and Schröder, P. 2003. Discrete shells. Symposium on Computer Animation, 62--67.
[24]
Guibas, L. 2004. Kinetic Data Structures. In Handbook of Data Structures and Applications, D. Mehta and S. Sahni, Eds. Chapman and Hall/CRC.
[25]
Harmon, D., Vouga, E., Smith, B., Tamstorf, R., and Grinspun, E. 2009. Asynchronous contact mechanics. ACM SIGGRAPH.
[26]
Hubbard, P. 1995. Collision detection for interactive graphics applications. IEEE Trans. Visualization and Computer Graphics 1, 3, 218--230.
[27]
Hutchinson, D., Preston, M., and Hewitt, T. 1996. Adaptive refinement for mass/spring simulations. In Proceedings of the Eurographics workshop on Computer animation and simulation'96, Springer-Verlag New York, Inc., 45.
[28]
Kaldor, J., James, D. L., and Marschner, S. 2008. Simulating knitted cloth at the yarn level. ACM SIGGRAPH.
[29]
Kawabata, S., Niwa, M., and Kawai, H. 1973. The finite deformation theory of plain-weave fabrics part I: The biaxial-deformation theory. Journal of the Textile Institute 64, 21--46.
[30]
Kharevych, L., Mullen, P., Owhadi, H., and Desbrun, M. 2009. Numerical coarsening of inhomogeneous elastic materials. ACM Trans. Graph. 28, 3, 1--8.
[31]
Kim, T., and James, D. L. 2009. Skipping steps in deformable simulation with online model reduction. ACM Trans. Graph. 28, 5, 1--9.
[32]
King, M., Jearanaisilawong, P., and Scorate, S. 2005. A continuum constitutive model for the mechanical behavior of woven fabrics. International Journal of Solids and Structures 42, 3867--3896.
[33]
Mirtich, B. 2000. Timewarp rigid body simulation. In Proceedings of ACM SIGGRAPH 2000, Computer Graphics Proceedings, Annual Conference Series, 193--200.
[34]
Müller, M., and Gross, M. 2004. Interactive virtual materials. In Proceedings of Graphics Interface 2004, 239--246.
[35]
Müller, M., Dorsey, J., McMillan, L., Jagnow, R., and Cutler, B. 2002. Stable real-time deformations. In ACM SIGGRAPH Symposium on Computer Animation, 49--54.
[36]
Müller, M., Heidelberger, B., Teschner, M., and Gross, M. 2005. Meshless deformations based on shape matching. ACM SIGGRAPH 24, 3, 471--478.
[37]
Nesme, M., Kry, P. G., Jeřábková, L., and Faure, F. 2009. Preserving topology and elasticity for embedded deformable models. ACM Trans. Graph. 28, 3, 1--9.
[38]
Pai, D. 2002. STRANDS: Interactive simulation of thin solids using Cosserat models. Eurographics 21, 347--352.
[39]
Provot, X. 1995. Deformation constraints in a mass-spring model to describe rigid cloth behavior. Proc. Graphics Interface '95, 147--154.
[40]
Provot, X. 1997. Collision and self-collision handling in cloth model dedicated to design garments. In Computer Animation and Simulation '97: Proceedings of the Eurographics Workshop in Budapest, Hungary, September 2--3, 1997, Springer, 177.
[41]
Rivers, A. R., and James, D. L. 2007. FastLSM: Fast lattice shape matching for robust real-time deformation. ACM Trans. Graph. 26, 3, 82.
[42]
Spillmann, J., and Teschner, M. 2008. An adaptive contact model for the robust simulation of knots. Eurographics 27, 497--506.
[43]
Terzopoulos, D., Platt, J., Barr, A., and Fleischer, K. 1987. Elastically deformable models. Computer Graphics 21, 205--214.
[44]
Teschner, M., Kimmerle, S., Heidelberger, B., Zachmann, G., Raghupathi, L., Fuhrmann, A., Cani, M., Faure, F., Magnenat-Thalmann, N., Strasser, W., and Volino, P. 2005. Collision detection for deformable objects. In Computer Graphics Forum, vol. 24, Blackwell Publishing, 61--81.
[45]
Theetten, A., Grisoni, L., Duriez, C., and Merlhiot, X. 2007. Quasi-dynamic splines. In Proc. ACM Symposium on Solid and Physical Modeling '07.
[46]
Villard, J., and Borouchaki, H. 2005. Adaptive meshing for cloth animation. Engineering with Computers 20, 4, 333--341.
[47]
Volino, P., and Thalmann, N. M. 2000. Implementing fast cloth simulation with collision response. In Proc. Computer Graphics International, 257--266.
[48]
Volino, P., martin Courchesne, and Magnenat-Thalmann, N. 1995. Versatile and efficient techniques for simulating cloth and other deformable objects. In Proc. SIGGRAPH '95.
[49]
Zeng, X., Tan, V. B. C., and Shin, V. P. W. 2006. Modelling inter-yarn friction in woven fabric armor. International Journal for Numerical Methods in Engineering 66, 1309--1330.

Cited By

View all
  • (2024)Digitally Creating Garmentsデジタルで衣服をつくるJournal of Japan Society of Kansei Engineering10.5057/kansei.22.1_322:1(3-10)Online publication date: 31-Mar-2024
  • (2024)BİLGİSAYAR GRAFİKLERİNDE KUMAŞ SİMÜLASYONU ÜZERİNE BİR İNCELEMEBeykent Üniversitesi Fen ve Mühendislik Bilimleri Dergisi10.20854/bujse.139503217:1(1-16)Online publication date: 12-Jul-2024
  • (2024)Yarn-level modeling and simulation of fancy weft-knitted fabricTextile Research Journal10.1177/0040517524123595094:17-18(2063-2078)Online publication date: 28-Mar-2024
  • Show More Cited By

Recommendations

Comments

Please enable JavaScript to view thecomments powered by Disqus.

Information & Contributors

Information

Published In

cover image ACM Transactions on Graphics
ACM Transactions on Graphics  Volume 29, Issue 4
July 2010
942 pages
ISSN:0730-0301
EISSN:1557-7368
DOI:10.1145/1778765
Issue’s Table of Contents
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

Publisher

Association for Computing Machinery

New York, NY, United States

Publication History

Published: 26 July 2010
Published in TOG Volume 29, Issue 4

Permissions

Request permissions for this article.

Check for updates

Author Tags

  1. adaptive
  2. cloth
  3. contact
  4. corotational
  5. knitted
  6. yarn

Qualifiers

  • Research-article

Funding Sources

Contributors

Other Metrics

Bibliometrics & Citations

Bibliometrics

Article Metrics

  • Downloads (Last 12 months)35
  • Downloads (Last 6 weeks)2
Reflects downloads up to 05 Jan 2025

Other Metrics

Citations

Cited By

View all
  • (2024)Digitally Creating Garmentsデジタルで衣服をつくるJournal of Japan Society of Kansei Engineering10.5057/kansei.22.1_322:1(3-10)Online publication date: 31-Mar-2024
  • (2024)BİLGİSAYAR GRAFİKLERİNDE KUMAŞ SİMÜLASYONU ÜZERİNE BİR İNCELEMEBeykent Üniversitesi Fen ve Mühendislik Bilimleri Dergisi10.20854/bujse.139503217:1(1-16)Online publication date: 12-Jul-2024
  • (2024)Yarn-level modeling and simulation of fancy weft-knitted fabricTextile Research Journal10.1177/0040517524123595094:17-18(2063-2078)Online publication date: 28-Mar-2024
  • (2024)TensCERs: Tension-Constrained Elastic RodsACM Transactions on Graphics10.1145/368796743:6(1-13)Online publication date: 19-Dec-2024
  • (2024)Chebyshev Parameterization for Woven Fabric ModelingACM Transactions on Graphics10.1145/368792843:6(1-15)Online publication date: 19-Dec-2024
  • (2024)Volumetric Homogenization for Knitwear SimulationACM Transactions on Graphics10.1145/368791143:6(1-19)Online publication date: 19-Dec-2024
  • (2024)A Cubic Barrier with Elasticity-Inclusive Dynamic StiffnessACM Transactions on Graphics10.1145/368790843:6(1-13)Online publication date: 19-Dec-2024
  • (2024)Automatic Digital Garment Initialization from Sewing PatternsACM Transactions on Graphics10.1145/365812843:4(1-12)Online publication date: 19-Jul-2024
  • (2024)What's in a cable? Abstracting Knitting Design Elements with Blended Raster/Vector PrimitivesProceedings of the 37th Annual ACM Symposium on User Interface Software and Technology10.1145/3654777.3676351(1-20)Online publication date: 13-Oct-2024
  • (2024)Neural-Assisted Homogenization of Yarn-Level ClothACM SIGGRAPH 2024 Conference Papers10.1145/3641519.3657411(1-10)Online publication date: 13-Jul-2024
  • Show More Cited By

View Options

Login options

Full Access

View options

PDF

View or Download as a PDF file.

PDF

eReader

View online with eReader.

eReader

Media

Figures

Other

Tables

Share

Share

Share this Publication link

Share on social media