Huamin Wang
Engineering · The Ohio State University
Publications
185
Citations
4,337
Est. group size
—
Recurring co-author estimate
Active years
42
Publishing since 1985
Huamin Wang's research focuses on computer graphics, particularly the physical simulation of deformable materials like cloth, garments, and knitwear, and how to make these simulations faster and more realistic using GPU computing. Recent work also branches into generative AI methods for designing and customizing garments and textures, such as turning sketches or design concepts into wearable sewing patterns. This research is largely aimed at applications in digital fashion, animation, and virtual try-on technologies.
Publication output has grown over the last decade, with a notable increase in output from 2024 onward compared to earlier, more variable years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Interactive Yarn-level Knitwear with Nested Douglas-Rachford Splitting
ACM Transactions on Graphics · 2026
- Heterogeneous Subspace Corrections for GPU Deformable Multibody Dynamics
ACM Transactions on Graphics · 2026
- Distributed Affine Body Dynamics with Adaptive Consensus
2026
- FabricTryOn: Taming Image Editing Models for Garment Re-Texturing
2026
- GarmageNet: A Multimodal Generative Framework for Sewing Pattern Design and Generic Garment Modeling
ACM Transactions on Graphics · 2025
- JGS2: Near Second-order Converging Jacobi/Gauss-Seidel for GPU Elastodynamics
ACM Transactions on Graphics · 2025
- Diosgenin ameliorates CLP-induced sepsis in mice via suppressing inflammatory responses and preserving intestinal mucosal barrier integrity
Molecular Immunology · 2025
- One-shot Embroidery Customization via Contrastive LoRA Modulation
ACM Transactions on Graphics · 2025
- Design2GarmentCode: Turning Design Concepts to Tangible Garments Through Program Synthesis
2025
- GarmentDreamer: 3DGS Guided Garment Synthesis with Diverse Geometry and Texture Details
2025
- Progressive Outfit Assembly and Instantaneous Pose Transfer
2025
- Fast Physics-Based Modeling of Knots and Ties using Templates
2025
- Automated Task Scheduling for Cloth and Deformable Body Simulations in Heterogeneous Computing Environments
2025
- Physics-inspired Estimation of Optimal Cloth Mesh Resolution
2025
- Efficient Object Reconstruction with Differentiable Area Light Shading
2025
- ACM Transactions on Graphics×21
- arXiv (Cornell University)×13
- IEEE Transactions on Visualization and Computer Graphics×6
- Computer Graphics Forum×4
- Neurocomputing×4
- Yichen Sheng
Engineering · Purdue University West Lafayette
- Rongjie Lai
Engineering · Purdue University West Lafayette
- Roger Crawfis
Computer Science · The Ohio State University
- Bedřich Beneš
Computer Science · Purdue University West Lafayette
- Asim Unmesh
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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