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Unsupervised Learning of Depth and Ego-Motion from Video

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abstract

We present an unsupervised learning framework for the task of monocular depth and camera motion estimation from unstructured video sequences. We achieve this by simultaneously training depth and camera pose estimation networks using the task of view synthesis as the supervisory signal. The networks are thus coupled via the view synthesis objective during training, but can be applied independently at test time. Empirical evaluation on the KITTI dataset demonstrates the effectiveness of our approach: 1) monocular depth performing comparably with supervised methods that use either ground-truth pose or depth for training, and 2) pose estimation performing favorably with established SLAM systems under comparable input settings.

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cs.CV 1

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2025 1

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Rig3R: Rig-Aware Conditioning for Learned 3D Reconstruction

cs.CV · 2025-06-02 · conditional · novelty 7.0

Rig3R conditions learned 3D reconstruction on optional rig metadata and predicts rig-relative raymaps, enabling state-of-the-art pose estimation and rig calibration discovery from images.

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  • Rig3R: Rig-Aware Conditioning for Learned 3D Reconstruction cs.CV · 2025-06-02 · conditional · none · ref 47 · internal anchor

    Rig3R conditions learned 3D reconstruction on optional rig metadata and predicts rig-relative raymaps, enabling state-of-the-art pose estimation and rig calibration discovery from images.