English

HunyuanWorld 1.0: Generating Immersive, Explorable, and Interactive 3D Worlds from Words or Pixels

Computer Vision and Pattern Recognition 2025-08-14 v2

Abstract

Creating immersive and playable 3D worlds from texts or images remains a fundamental challenge in computer vision and graphics. Existing world generation approaches typically fall into two categories: video-based methods that offer rich diversity but lack 3D consistency and rendering efficiency, and 3D-based methods that provide geometric consistency but struggle with limited training data and memory-inefficient representations. To address these limitations, we present HunyuanWorld 1.0, a novel framework that combines the best of both worlds for generating immersive, explorable, and interactive 3D scenes from text and image conditions. Our approach features three key advantages: 1) 360{\deg} immersive experiences via panoramic world proxies; 2) mesh export capabilities for seamless compatibility with existing computer graphics pipelines; 3) disentangled object representations for augmented interactivity. The core of our framework is a semantically layered 3D mesh representation that leverages panoramic images as 360{\deg} world proxies for semantic-aware world decomposition and reconstruction, enabling the generation of diverse 3D worlds. Extensive experiments demonstrate that our method achieves state-of-the-art performance in generating coherent, explorable, and interactive 3D worlds while enabling versatile applications in virtual reality, physical simulation, game development, and interactive content creation.

Keywords

Cite

@article{arxiv.2507.21809,
  title  = {HunyuanWorld 1.0: Generating Immersive, Explorable, and Interactive 3D Worlds from Words or Pixels},
  author = {HunyuanWorld Team and Zhenwei Wang and Yuhao Liu and Junta Wu and Zixiao Gu and Haoyuan Wang and Xuhui Zuo and Tianyu Huang and Wenhuan Li and Sheng Zhang and Yihang Lian and Yulin Tsai and Lifu Wang and Sicong Liu and Puhua Jiang and Xianghui Yang and Dongyuan Guo and Yixuan Tang and Xinyue Mao and Jiaao Yu and Junlin Yu and Jihong Zhang and Meng Chen and Liang Dong and Yiwen Jia and Chao Zhang and Yonghao Tan and Hao Zhang and Zheng Ye and Peng He and Runzhou Wu and Minghui Chen and Zhan Li and Wangchen Qin and Lei Wang and Yifu Sun and Lin Niu and Xiang Yuan and Xiaofeng Yang and Yingping He and Jie Xiao and Yangyu Tao and Jianchen Zhu and Jinbao Xue and Kai Liu and Chongqing Zhao and Xinming Wu and Tian Liu and Peng Chen and Di Wang and Yuhong Liu and Linus and Jie Jiang and Tengfei Wang and Chunchao Guo},
  journal= {arXiv preprint arXiv:2507.21809},
  year   = {2025}
}

Comments

Technical Report; Project Page: https://3d-models.hunyuan.tencent.com/world/

R2 v1 2026-07-01T04:24:02.693Z