@article{Jambon2026, 
author = {Clément Jambon and Changwoon Choi and Dongsu Zhang and Olga Sorkine-Hornung and Young Min Kim},
title = {ExCellGen: Fast, controllable, photorealistic 3D scene generation from a single real-world exemplar},
year = {2026},
journal = {Computational Visual Media},
volume = {12},
number = {4},
pages = {907-923},
keywords = {interaction, generative cellular automata (GCA), 3D Gaussian splatting (3DGS), scene generation, patch-based synthesis},
url = {https://www.sciopen.com/article/10.26599/CVM.2026.9450548},
doi = {10.26599/CVM.2026.9450548},
abstract = {Photorealistic 3D scene generation is challenging due to the scarcity of large-scale, high-quality real-world 3D datasets; manual modeling has complex workflows requiring specialized expertise. These constraints often result in slow iteration cycles, where each modification demands substantial effort, ultimately stifling creativity. We propose a fast, exemplar-driven framework for generating 3D scenes from a single casual input, such as handheld video or drone footage. Our method first leverages 3D Gaussian splatting to robustly reconstruct input scenes with a high-quality 3D appearance model. We then train a per-scene generative cellular automaton to produce a sparse volume of featurized voxels, effectively amortizing scene generation while enabling controllability. A subsequent patch-based remapping step composites the complete scene from the exemplar’s initial 3D Gaussian splats, successfully recovering the appearance statistics of the input scene. The entire pipeline can be trained in less than 10 min for a given exemplar, and generates scenes in 0.5–2 s. Our method enables interactive creation with full user control. We showcase complex 3D generation results produced from real-world exemplars using a self-contained interactive GUI.}
}