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Neural Human Performer: Learning Generalizable Radiance Fields for Human Performance Rendering

About

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.

Youngjoong Kwon, Dahun Kim, Duygu Ceylan, Henry Fuchs• 2021

Related benchmarks

TaskDatasetResultRank
Novel View SynthesisZJU-MoCap (test)
SSIM0.955
43
3D human reconstructionZJU-MoCap (test)
PSNR29.46
31
Human Novel View SynthesisZJU-MoCap
PSNR28.25
31
Novel View SynthesisZJUMocap unseen identity
PSNR26.94
17
Novel View SynthesisMonoCap (test)
PSNR30.51
17
Novel View SynthesisZJU-MoCap (source models' seen poses)
PSNR31.57
10
3D Geometry ReconstructionTHuman 2.0
Chamfer Distance1.6027
9
Human Novel View SynthesisHuMMan
PSNR18.99
6
Novel View SynthesisTHuman 2.0 (unseen identity)
PSNR26.99
5
Novel View SynthesisTHuman in-domain 2.0 (test)
PSNR25.74
5
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