Differentiable solver for time-dependent deformation problems with contact

IF 7.8 1区 计算机科学 Q1 COMPUTER SCIENCE, SOFTWARE ENGINEERING ACM Transactions on Graphics Pub Date : 2024-04-26 DOI:10.1145/3657648
Zizhou Huang, Davi Colli Tozoni, Arvi Gjoka, Zachary Ferguson, Teseo Schneider, Daniele Panozzo, Denis Zorin
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Abstract

We introduce a general differentiable solver for time-dependent deformation problems with contact and friction. Our approach uses a finite element discretization with a high-order time integrator coupled with the recently proposed incremental potential contact method for handling contact and friction forces to solve ODE- and PDE-constrained optimization problems on scenes with complex geometry. It supports static and dynamic problems and differentiation with respect to all physical parameters involved in the physical problem description, which include shape, material parameters, friction parameters, and initial conditions. Our analytically derived adjoint formulation is efficient, with a small overhead (typically less than 10% for nonlinear problems) over the forward simulation, and shares many similarities with the forward problem, allowing the reuse of large parts of existing forward simulator code.

We implement our approach on top of the open-source PolyFEM library and demonstrate the applicability of our solver to shape design, initial condition optimization, and material estimation on both simulated results and physical validations.

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随时间变化的接触变形问题的可微分求解器
我们为具有接触和摩擦力的随时间变化的变形问题引入了一种通用可微分求解器。我们的方法使用带有高阶时间积分器的有限元离散化,并结合最近提出的增量势接触法来处理接触力和摩擦力,从而解决复杂几何场景中的 ODE 和 PDE 受限优化问题。它支持静态和动态问题,并对物理问题描述中涉及的所有物理参数(包括形状、材料参数、摩擦参数和初始条件)进行微分。我们通过分析推导出的积分公式效率很高,与正向模拟相比开销很小(对于非线性问题通常小于 10%),并且与正向问题有很多相似之处,因此可以重复使用现有正向模拟器的大部分代码。我们在开源 PolyFEM 库的基础上实现了我们的方法,并在模拟结果和物理验证中演示了我们的求解器在形状设计、初始条件优化和材料估算方面的适用性。
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来源期刊
ACM Transactions on Graphics
ACM Transactions on Graphics 工程技术-计算机:软件工程
CiteScore
14.30
自引率
25.80%
发文量
193
审稿时长
12 months
期刊介绍: ACM Transactions on Graphics (TOG) is a peer-reviewed scientific journal that aims to disseminate the latest findings of note in the field of computer graphics. It has been published since 1982 by the Association for Computing Machinery. Starting in 2003, all papers accepted for presentation at the annual SIGGRAPH conference are printed in a special summer issue of the journal.
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