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Shadow Neural Radiance Fields for Multi-view Satellite Photogrammetry

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arxiv 2104.09877 v1 pith:KQ4VTMIU submitted 2021-04-20 cs.CV

classification cs.CV
keywords lightsourcefields-nerfshadowshapecolordiffuse
verification ladder T0 review T1 audit T2 compute T3 formal
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We present a new generic method for shadow-aware multi-view satellite photogrammetry of Earth Observation scenes. Our proposed method, the Shadow Neural Radiance Field (S-NeRF) follows recent advances in implicit volumetric representation learning. For each scene, we train S-NeRF using very high spatial resolution optical images taken from known viewing angles. The learning requires no labels or shape priors: it is self-supervised by an image reconstruction loss. To accommodate for changing light source conditions both from a directional light source (the Sun) and a diffuse light source (the sky), we extend the NeRF approach in two ways. First, direct illumination from the Sun is modeled via a local light source visibility field. Second, indirect illumination from a diffuse light source is learned as a non-local color field as a function of the position of the Sun. Quantitatively, the combination of these factors reduces the altitude and color errors in shaded areas, compared to NeRF. The S-NeRF methodology not only performs novel view synthesis and full 3D shape estimation, it also enables shadow detection, albedo synthesis, and transient object filtering, without any explicit shape supervision.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Construction of Digital Terrain Maps from Multi-view Satellite Imagery using Neural Volume Rendering

    cs.CV 2025-08 unverdicted novelty 5.0 of 10

    Neural terrain maps reconstruct digital elevation models from multi-view satellite imagery alone, reaching near image-resolution accuracy.

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