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Chih-Hao Lin

6 accepted papers

2026

Generalizable Sparse-View 3D Reconstruction from Unconstrained Images

CVPR 2026

Reconstructing 3D scenes from sparse, unposed images remains challenging under real-world conditions with varying illumination and transient occlusions. Existing methods rely on scene-specific optimization with appearance embeddings or dynamic masks, requiring extensive per-scene training and failin

Cited by 0SourcecodeScholar
2025

Controllable Weather Synthesis and Removal with Video Diffusion Models

ICCV 2025poster

Generating realistic and controllable weather effects in videos is valuable for many applications. Physics-based weather simulation requires precise reconstructions that are hard to scale to in-the-wild videos, while current video editing often lacks realism and control.In this work, we introduce We…

Cited by 0SourcePDFScholar
2025

Diffusion Renderer: Neural Inverse and Forward Rendering with Video Diffusion Models

CVPR 2025poster

Understanding and modeling lighting effects are fundamental tasks in computer vision and graphics. Classic physically-based rendering (PBR) accurately simulates the light transport, but relies on precise scene representations--explicit 3D geometry, high-quality material properties, and lighting cond…

Cited by 3SourcePDFScholar
2025

HoloScene: Simulation‑Ready Interactive 3D Worlds from a Single Video

NeurIPS 2025poster

Digitizing the physical world into accurate simulation‑ready virtual environments offers significant opportunities in a variety of fields such as augmented and virtual reality, gaming, and robotics. However, current 3D reconstruction and scene-understanding methods commonly fall short in one or more…

Cited by 0SourceScholar
2025

IRIS: Inverse Rendering of Indoor Scenes from Low Dynamic Range Images

CVPR 2025poster

Inverse rendering seeks to recover 3D geometry, surface material, and lighting from captured images, enabling advanced applications such as novel-view synthesis, relighting, and virtual object insertion. However, most existing techniques rely on high dynamic range (HDR) images as input, limiting acc…

Cited by 4SourcePDFScholar
2025

InvRGB+L: Inverse Rendering of Complex Scenes with Unified Color and LiDAR Reflectance Modeling

ICCV 2025poster

We present InvRGB+L, a novel inverse rendering model that reconstructs large, relightable, and dynamic scenes from a single RGB+LiDAR sequence. Conventional inverse graphics methods rely primarily on RGB observations and use LiDAR mainly for geometric information, often resulting in suboptimal mater…

Cited by 0SourcePDFScholar