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Self-Supervised 3D Keypoint Learning for Ego-motion Estimation

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arxiv 1912.03426 v3 pith:RSTZWMLT submitted 2019-12-07 cs.CV cs.LGcs.RO

Self-Supervised 3D Keypoint Learning for Ego-motion Estimation

classification cs.CV cs.LGcs.RO
keywords estimationkeypointkeypointsself-supervisedego-motionlearningmatchingreal-world
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Detecting and matching robust viewpoint-invariant keypoints is critical for visual SLAM and Structure-from-Motion. State-of-the-art learning-based methods generate training samples via homography adaptation to create 2D synthetic views with known keypoint matches from a single image. This approach, however, does not generalize to non-planar 3D scenes with illumination variations commonly seen in real-world videos. In this work, we propose self-supervised learning of depth-aware keypoints directly from unlabeled videos. We jointly learn keypoint and depth estimation networks by combining appearance and geometric matching via a differentiable structure-from-motion module based on Procrustean residual pose correction. We describe how our self-supervised keypoints can be integrated into state-of-the-art visual odometry frameworks for robust and accurate ego-motion estimation of autonomous vehicles in real-world conditions.

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