What goes around: leveraging a constant-curvature motion constraint in radar odometry

Symplectic ID
1268845
Source
Ora (Hyrax)
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Saturday, 12 September, 2026 - 21:55
DOI
10.1109/LRA.2022.3186757
Publication Date
Monday, 27 June, 2022
First Page
7865
Last Page
7872
Keywords
field robotics
ego-motion estimation
radar odometry
radar
sensing
motion constraints
Authors
Aldera, R
Gadd, M
De Martini, D
Newman, P
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Abstract
This letter presents a method that leverages vehicle motion constraints to refine data associations in a point-based radar odometry system. By using the strong prior on how a non-holonomic robot is constrained to move smoothly through its environment, we develop the necessary framework to estimate ego-motion from a single landmark association rather than considering all of these correspondences at once. This allows for informed outlier detection of poor matches that are a dominant source of pose estimate error. By refining the subset of matched landmarks, we see an absolute decrease of 2.15% (from 4.68% to 2.53%) in translational error, approximately halving the error in odometry (reducing by 45.94%) than when using the full set of correspondences. This contribution is relevant to other point-based odometry implementations that rely on a range sensor and provides a lightweight and interpretable means of incorporating vehicle dynamics for ego-motion estimation.
Publisher
IEEE
Journal Title
IEEE Robotics and Automation Letters
eISSN
2377-3766
Volume
7
Issue
3
ID at Source
uuid_72075cd9-ee0c-41fe-bc47-002dcb3d60ca
Publication Status
Published
Open access
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