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Volume 3, Issue 2
Numerical Stability of Integration Methods used in Cloth Simulation

Hong-Yan Liu, Yueqi Zhong & Shan-Yuan Wang

Journal of Fiber Bioengineering & Informatics, 3 (2010), pp. 106-110.

Published online: 2010-03

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  • Abstract
For better performance, efficient numerical methods describing physical behaviour of clothes are needed for any cloth simulation system. In this paper we report a quantitative research performed on the stability of the most widely used integration techniques in cloth simulation. Advantages and weaknesses of various integration techniques are listed for trade-off among stability, accuracy and speed. In this light, we offer a solution for choosing numerical methods when dealing with simulation problems.
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@Article{JFBI-3-106, author = {}, title = {Numerical Stability of Integration Methods used in Cloth Simulation}, journal = {Journal of Fiber Bioengineering and Informatics}, year = {2010}, volume = {3}, number = {2}, pages = {106--110}, abstract = {For better performance, efficient numerical methods describing physical behaviour of clothes are needed for any cloth simulation system. In this paper we report a quantitative research performed on the stability of the most widely used integration techniques in cloth simulation. Advantages and weaknesses of various integration techniques are listed for trade-off among stability, accuracy and speed. In this light, we offer a solution for choosing numerical methods when dealing with simulation problems.}, issn = {2617-8699}, doi = {https://doi.org/10.3993/jfbi09201008}, url = {http://global-sci.org/intro/article_detail/jfbi/4954.html} }
TY - JOUR T1 - Numerical Stability of Integration Methods used in Cloth Simulation JO - Journal of Fiber Bioengineering and Informatics VL - 2 SP - 106 EP - 110 PY - 2010 DA - 2010/03 SN - 3 DO - http://doi.org/10.3993/jfbi09201008 UR - https://global-sci.org/intro/article_detail/jfbi/4954.html KW - Cloth simulation KW - numerical integration KW - euler KW - midpoint KW - runge-kutta KW - verlet KW - stability AB - For better performance, efficient numerical methods describing physical behaviour of clothes are needed for any cloth simulation system. In this paper we report a quantitative research performed on the stability of the most widely used integration techniques in cloth simulation. Advantages and weaknesses of various integration techniques are listed for trade-off among stability, accuracy and speed. In this light, we offer a solution for choosing numerical methods when dealing with simulation problems.
Hong-Yan Liu, Yueqi Zhong & Shan-Yuan Wang. (2019). Numerical Stability of Integration Methods used in Cloth Simulation. Journal of Fiber Bioengineering and Informatics. 3 (2). 106-110. doi:10.3993/jfbi09201008
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