Synthesizing 3D Scenes via Diffusion Model that Incorporates Indoor Scene Characteristics
Liang Yue, Shao-Kui Zhang, Lin Yuan, Yi-Tao Chen, Zirui Zhou, Song-Hai Zhang
Abstract
Diffusion model has been used in indoor scene synthesis and has made significant progress. Current works encode an indoor scene as a top-down view of the room, a list of objects, and their world co-ordinates and orientation. In this paper, we develop a diffusion-based training and synthetic method which incorporates indoor scene ''characteristics''. Firstly, we calculate the relative transformations among objects to capture the local characteristics of the scene. We send this relative transformation into the self-attention layer of the denoising network as ''relative positional encoding''. Secondly, we use room guidance to guide the objects to fit the room's geometry. This improvement uses the room's characteristics to solve the physical collision problem occurring in former diffusion-based works, while preserving plausibilities. Experiments show that our improvements improve the scene variety and quality.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Cited by top-tier papers1
Ask how each one uses itRelated papers
- DiffuScene: Denoising Diffusion Models for Generative Indoor Scene SynthesisJiapeng Tang, Yinyu Nie, Lev Markhasin, Angela Dai et al.CVPR 2024 · 62 citations
- RoomDreamer: Text-Driven 3D Indoor Scene Synthesis with Coherent Geometry and TextureLiangchen Song, Liangliang Cao, Hongyu Xu, Kai Kang et al.ACM MM 2023 · 35 citations
- DiffInDScene: Diffusion-Based High-Quality 3D Indoor Scene GenerationXiaoliang Ju, Zhaoyang Huang, Yijiin Li, Guofeng Zhang et al.CVPR 2024
- SceneTex: High-Quality Texture Synthesis for Indoor Scenes via Diffusion PriorsDave Zhenyu Chen, Haoxuan Li, Hsin-Ying Lee, Sergey Tulyakov et al.CVPR 2024
- Language-driven Scene Synthesis using Multi-conditional Diffusion ModelVuong Dinh An, Minh Nhat Vu, Toan Nguyen, Baoru Huang et al.NeurIPS 2023 · 14 citations
