Neural Human Performer: Learning Generalizable Radiance Fields for Human Performance Rendering
Youngjoong Kwon, Dahun Kim, Duygu Ceylan, Henry Fuchs
Abstract
In this paper, we aim at synthesizing a free-viewpoint video of an arbitrary human performance using sparse multi-view cameras. Recently, several works have addressed this problem by learning person-specific neural radiance fields (NeRF) to capture the appearance of a particular human. In parallel, some work proposed to use pixel-aligned features to generalize radiance fields to arbitrary new scenes and objects. Adopting such generalization approaches to humans, however, is highly challenging due to the heavy occlusions and dynamic articulations of body parts. To tackle this, we propose Neural Human Performer, a novel approach that learns generalizable neural radiance fields based on a parametric human body model for robust performance capture. Specifically, we first introduce a temporal transformer that aggregates tracked visual features based on the skeletal body motion over time. Moreover, a multi-view transformer is proposed to perform cross-attention between the temporally-fused features and the pixel-aligned features at each time step to integrate observations on the fly from multiple views. Experiments on the ZJU-MoCap and AIST datasets show that our method significantly outperforms recent generalizable NeRF methods on unseen identities and poses. The video results and code are available at https://youngjoongunc.github.io/nhp .
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 4e86a743-e2b8-48cb-9d24-18083baff273Cited by top-tier papers76
- NeuS2: Fast Learning of Neural Implicit Surfaces for Multi-view ReconstructionYiming Wang, Qin Han, Marc Habermann, Kostas Daniilidis et al.ICCV 2023 · 402 citations
- Monocular Dynamic View Synthesis: A Reality CheckHang Gao, Ruilong Li, Shubham Tulsiani, Bryan Russell et al.NeurIPS 2022 · 235 citations
- InfoNeRF: Ray Entropy Minimization for Few-Shot Neural Volume RenderingMijeong Kim, Seonguk Seo, Bohyung HanCVPR 2022 · 147 citations
- Generative Neural Articulated Radiance FieldsAlexander W. Bergman, Petr Kellnhofer, Wang Yifan, Eric R. Chan et al.NeurIPS 2022 · 144 citations
- SHERF: Generalizable Human NeRF from a Single ImageShoukang Hu, Fangzhou Hong, Liang Pan, Haiyi Mei et al.ICCV 2023 · 115 citations
Builds on17
- Neural Sparse Voxel FieldsLingjie Liu, Jiatao Gu, Kyaw Zaw Lin, Tat-Seng Chua et al.NeurIPS 2020 · 1,535 citations
- PIFu: Pixel-Aligned Implicit Function for High-Resolution Clothed Human DigitizationShunsuke Saito, Zeng Huang, Ryota Natsume, Shigeo Morishima et al.ICCV 2019 · 1,411 citations
- AI Choreographer: Music Conditioned 3D Dance Generation with AIST++Ruilong Li, Shan Yang, David A. Ross, Angjoo KanazawaICCV 2021 · 701 citations
- DeepHuman: 3D Human Reconstruction From a Single ImageZerong Zheng, Tao Yu, Yixuan Wei, Qionghai Dai et al.ICCV 2019 · 367 citations
- Transformable Bottleneck NetworksKyle Olszewski, Sergey Tulyakov, Oliver J. Woodford, Hao Li et al.ICCV 2019 · 79 citations
Related papers
- GM-NeRF: Learning Generalizable Model-Based Neural Radiance Fields from Multi-View ImagesJianchuan Chen, Wentao Yi, Liqian Ma, Xu Jia et al.CVPR 2023
- HumanNeRF: Efficiently Generated Human Radiance Field from Sparse InputsFuqiang Zhao, Wei Yang, Jiakai Zhang, Pei Lin et al.CVPR 2022 · 109 citations
- TransHuman: A Transformer-based Human Representation for Generalizable Neural Human RenderingXiao Pan, Zongxin Yang, Jianxin Ma, Chang Zhou et al.ICCV 2023 · 29 citations
- Neural Image-based Avatars: Generalizable Radiance Fields for Human Avatar ModelingYoungjoong Kwon, Dahun Kim, Duygu Ceylan, Henry FuchsICLR 2023 · 1 citation
- H-NeRF: Neural Radiance Fields for Rendering and Temporal Reconstruction of Humans in MotionHongyi Xu, Thiemo Alldieck, Cristian SminchisescuNeurIPS 2021 · 225 citations
