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SiLK -- Simple Learned Keypoints

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arxiv 2304.06194 v1 pith:H77CIDWA submitted 2023-04-12 cs.CV

classification cs.CV
keywords keypointlearnedsilktasksbeendescriptorsdesigndetection
verification ladder T0 review T1 audit T2 compute T3 formal
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Keypoint detection & descriptors are foundational tech-nologies for computer vision tasks like image matching, 3D reconstruction and visual odometry. Hand-engineered methods like Harris corners, SIFT, and HOG descriptors have been used for decades; more recently, there has been a trend to introduce learning in an attempt to improve keypoint detectors. On inspection however, the results are difficult to interpret; recent learning-based methods employ a vast diversity of experimental setups and design choices: empirical results are often reported using different backbones, protocols, datasets, types of supervisions or tasks. Since these differences are often coupled together, it raises a natural question on what makes a good learned keypoint detector. In this work, we revisit the design of existing keypoint detectors by deconstructing their methodologies and identifying the key components. We re-design each component from first-principle and propose Simple Learned Keypoints (SiLK) that is fully-differentiable, lightweight, and flexible. Despite its simplicity, SiLK advances new state-of-the-art on Detection Repeatability and Homography Estimation tasks on HPatches and 3D Point-Cloud Registration task on ScanNet, and achieves competitive performance to state-of-the-art on camera pose estimation in 2022 Image Matching Challenge and ScanNet.

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Cited by 2 Pith papers

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    NightHawk jointly optimizes LED intensity and camera exposure with Bayesian optimization, using a learned-detector image-utility metric, and reports longer feature tracks in a real low-light culvert deployment.

  2. Accelerating SfM-based Pose Estimation with Dominating Set

    cs.CV 2025-06 conditional novelty 6.0 of 10

    Using a greedy dominating set on a graph of reference images speeds up SfM-based 6-DoF pose estimation by 1.5-14.5x with moderate accuracy loss.

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