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Multi-view Inverse Rendering for Large-scale Real-world Indoor Scenes (2211.10206v4)

Published 18 Nov 2022 in cs.CV

Abstract: We present a efficient multi-view inverse rendering method for large-scale real-world indoor scenes that reconstructs global illumination and physically-reasonable SVBRDFs. Unlike previous representations, where the global illumination of large scenes is simplified as multiple environment maps, we propose a compact representation called Texture-based Lighting (TBL). It consists of 3D mesh and HDR textures, and efficiently models direct and infinite-bounce indirect lighting of the entire large scene. Based on TBL, we further propose a hybrid lighting representation with precomputed irradiance, which significantly improves the efficiency and alleviates the rendering noise in the material optimization. To physically disentangle the ambiguity between materials, we propose a three-stage material optimization strategy based on the priors of semantic segmentation and room segmentation. Extensive experiments show that the proposed method outperforms the state-of-the-art quantitatively and qualitatively, and enables physically-reasonable mixed-reality applications such as material editing, editable novel view synthesis and relighting. The project page is at https://lzleejean.github.io/TexIR.

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Authors (5)
  1. Zhen Li (334 papers)
  2. Lingli Wang (9 papers)
  3. Mofang Cheng (1 paper)
  4. Cihui Pan (3 papers)
  5. Jiaqi Yang (107 papers)
Citations (14)

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