1 citations
- Carnegie Mellon UniversityUS3 papers
- Genesis Medical CenterUS2 papers
- University of Hong KongHK2 papers
- California Miramar UniversityUS1 paper
- Genesis HealthCareUS1 paper
- Seattle UniversityUS1 paper
- University of California San DiegoUS1 paper
- University of UtahUS1 paper
- University of WashingtonUS1 paper
- Zhejiang UniversityCN1 paper
3 papers
cs.GR2026★ 1 cited
Robust and Efficient Penetration-Free Elastodynamics without Barriers
Juntian Zheng, Zhaofeng Luo, Minchen Li
We introduce a barrier-free optimization framework for non-penetration elastodynamic simulation that matches the robustness of Incremental Potential Contact (IPC) while overcoming…
cs.GR2026
YASPS: A Symbolic Framework for Extensible, High-Performance IPC Simulation
Xuan Tang, Kemeng Huang, Gilbert Bernstein +2
Incremental Potential Contact (IPC) enables robust, contact-rich simulation by casting elasticity and contact as a single energy minimization problem, but high-performance IPC pipe…
cs.GR2026
Efficient B-Spline Finite Elements for Cloth Simulation
Yuqi Meng, Yihao Shi, Kemeng Huang +5
We present an efficient B-spline finite element method (FEM) for cloth simulation. While higher-order FEM has long promised higher accuracy, its adoption in cloth simulators has be…