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Fast Dynamic Radiance Fields with Time-Aware Neural Voxels

About

Neural radiance fields (NeRF) have shown great success in modeling 3D scenes and synthesizing novel-view images. However, most previous NeRF methods take much time to optimize one single scene. Explicit data structures, e.g. voxel features, show great potential to accelerate the training process. However, voxel features face two big challenges to be applied to dynamic scenes, i.e. modeling temporal information and capturing different scales of point motions. We propose a radiance field framework by representing scenes with time-aware voxel features, named as TiNeuVox. A tiny coordinate deformation network is introduced to model coarse motion trajectories and temporal information is further enhanced in the radiance network. A multi-distance interpolation method is proposed and applied on voxel features to model both small and large motions. Our framework significantly accelerates the optimization of dynamic radiance fields while maintaining high rendering quality. Empirical evaluation is performed on both synthetic and real scenes. Our TiNeuVox completes training with only 8 minutes and 8-MB storage cost while showing similar or even better rendering performance than previous dynamic NeRF methods.

Jiemin Fang, Taoran Yi, Xinggang Wang, Lingxi Xie, Xiaopeng Zhang, Wenyu Liu, Matthias Nie{\ss}ner, Qi Tian• 2022

Related benchmarks

TaskDatasetResultRank
Novel View SynthesisNeRF Synthetic
PSNR21.61
92
Dynamic Scene ReconstructionActors-HQ (Actor 3, Sequence 1)
LPIPS0.298
59
Novel View SynthesisD-NeRF synthetic (test)
Average PSNR33.76
42
Novel View SynthesisBlender (test)
PSNR32.67
37
Novel View SynthesisNeRF-DS
Average PSNR21.61
26
Novel View SynthesisHyperNeRF (vrig)
PSNR24.3
23
Novel View SynthesisSynthetic dynamic scenes
PSNR32.67
19
Dynamic Scene Novel View SynthesisNVIDIA video dataset average over all scenes 112
PSNR19.74
17
Novel View SynthesisNeRF-DS Basin
PSNR20.66
15
Inference EfficiencySynthetic Lego scene (test)
Storage (MB)23.7
15
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