DiffCloth: Differentiable Cloth Simulation with Dry Frictional Contact
DiffCloth: Дифференцируемое моделирование тканей с контактным взаимодействием при сухом трении
2022-04-22
SCID: 54.1/6cka9mpu
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Projective Dynamicsdifferentiable cloth simulationdry frictional contactgradient-based optimizationrobot-assisted dressing
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Abstract (AI)
Cloth simulation has wide applications in computer animation, garment design, and robot-assisted dressing. This work presents a differentiable cloth simulator whose additional gradient information facilitates cloth-related applications. Our differentiable simulator extends a state-of-the-art cloth simulator based on Projective Dynamics (PD) and with dry frictional contact [Ly et al. 2020 ]. We draw inspiration from previous work [Du et al. 2021 ] to propose a fast and novel method for deriving gradients in PD-based cloth simulation with dry frictional contact. Furthermore, we conduct a comprehensive analysis and evaluation of the usefulness of gradients in contact-rich cloth simulation. Finally, we demonstrate the efficacy of our simulator in a number of downstream applications, including system identification, trajectory optimization for assisted dressing, closed-loop control, inverse design, and real-to-sim transfer. We observe a substantial speedup obtained from using our gradient information in solving most of these applications.
Key Findings
1
DiffCloth introduces a differentiable cloth simulator extending Projective Dynamics with dry frictional contact.
2
Gradient information supports system identification, assisted-dressing trajectory optimization, closed-loop control, inverse design, and real-to-sim transfer.
3
The method provides a fast approach for deriving gradients in Projective-Dynamics-based cloth simulation with dry frictional contact.
4
The work comprehensively evaluates the usefulness of gradients for contact-rich cloth simulation.
5
Using the derived gradients substantially accelerates solving most demonstrated downstream cloth-simulation applications.
Research Object
cloth with dry frictional contact in Projective Dynamics-based cloth simulation
Research Subject
differentiable gradient computation and its usefulness for contact-rich cloth simulation and downstream applications
Publication Details
Publication Date
2022-04-22
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