Explicitly symplectic algorithm for long-time simulation of ultra-flexible cloth

Joint Authors

Wang, Kang
Tan, Xiaohui
Fan, Yachun

Source

The International Arab Journal of Information Technology

Issue

Vol. 15, Issue 6 (30 Nov. 2018)8 p.

Publisher

Zarqa University

Publication Date

2018-11-30

Country of Publication

Jordan

No. of Pages

8

Main Subjects

Information Technology and Computer Science

Abstract EN

In this paper, a symplectic structure-preserved algorithm is presented to solve Hamiltonian dynamic model of ultra-flexible cloth simulation with high computation stability.

Our method can preserve the conserved quantity of a Hamiltonian, which enables a long-time stable simulation of ultra-flexible cloth.

Firstly, the dynamic equation of ultra-flexible cloth simulation is transferred into Hamiltonian system which is slightly perturbed from the original one, but with generalized structure preservability.

Secondly, semi-implicit symplecticRunge-Kutta and Euler algorithms are constructed, and able to be converted into explicit algorithms for the separable dynamic models.

Thirdly, in order to show the advantages, the presented algorithms are utilized to solve a conservative system which is the primary ultra-flexible cloth model unit.

The results show that the presented algorithms can preserve the system energy constant and can give the exact results even at large time-step, however the ordinary non-symplectic explicit methodsexhabit large error with the increasing of time-step.

Finally, the presented algorithms are adopted to simulate a large-areaultra-flexible cloth to validate the computation capability and stability.

The method employs the symplectial features and analytically integrates the force for better stability and accuracy while keeping the integration scheme is still explicit.

Experiment results show that our symplectic schemes are more powerful for integrating Hamiltonian systems than non-symplectic methods.

Our method is a common scheme for physically based system to simultaneously maintain real-time and long-time simulation.It has been implemented in the scene building platform - World Max Studio.

American Psychological Association (APA)

Tan, Xiaohui& Fan, Yachun& Wang, Kang. 2018. Explicitly symplectic algorithm for long-time simulation of ultra-flexible cloth. The International Arab Journal of Information Technology،Vol. 15, no. 6.
https://search.emarefa.net/detail/BIM-873976

Modern Language Association (MLA)

Tan, Xiaohui…[et al.]. Explicitly symplectic algorithm for long-time simulation of ultra-flexible cloth. The International Arab Journal of Information Technology Vol. 15, no. 6 (Nov. 2018).
https://search.emarefa.net/detail/BIM-873976

American Medical Association (AMA)

Tan, Xiaohui& Fan, Yachun& Wang, Kang. Explicitly symplectic algorithm for long-time simulation of ultra-flexible cloth. The International Arab Journal of Information Technology. 2018. Vol. 15, no. 6.
https://search.emarefa.net/detail/BIM-873976

Data Type

Journal Articles

Language

English

Notes

Includes appendix.

Record ID

BIM-873976