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NeRFusion: Fusing Radiance Fields for Large-Scale Scene Reconstruction (2203.11283v1)

Published 21 Mar 2022 in cs.CV and cs.GR

Abstract: While NeRF has shown great success for neural reconstruction and rendering, its limited MLP capacity and long per-scene optimization times make it challenging to model large-scale indoor scenes. In contrast, classical 3D reconstruction methods can handle large-scale scenes but do not produce realistic renderings. We propose NeRFusion, a method that combines the advantages of NeRF and TSDF-based fusion techniques to achieve efficient large-scale reconstruction and photo-realistic rendering. We process the input image sequence to predict per-frame local radiance fields via direct network inference. These are then fused using a novel recurrent neural network that incrementally reconstructs a global, sparse scene representation in real-time at 22 fps. This global volume can be further fine-tuned to boost rendering quality. We demonstrate that NeRFusion achieves state-of-the-art quality on both large-scale indoor and small-scale object scenes, with substantially faster reconstruction than NeRF and other recent methods.

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Authors (5)
  1. Xiaoshuai Zhang (23 papers)
  2. Sai Bi (44 papers)
  3. Kalyan Sunkavalli (59 papers)
  4. Hao Su (219 papers)
  5. Zexiang Xu (56 papers)
Citations (105)

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