Overhead Image Factors for Underwater Sonar-based SLAM
February 11, 2022 Β· Declared Dead Β· π IEEE Robotics and Automation Letters
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Authors
John McConnell, Fanfei Chen, Brendan Englot
arXiv ID
2202.05811
Category
cs.RO: Robotics
Citations
33
Venue
IEEE Robotics and Automation Letters
Last Checked
6 months ago
Abstract
Simultaneous localization and mapping (SLAM) is a critical capability for any autonomous underwater vehicle (AUV). However, robust, accurate state estimation is still a work in progress when using low-cost sensors. We propose enhancing a typical low-cost sensor package using widely available and often free prior information; overhead imagery. Given an AUV's sonar image and a partially overlapping, globally-referenced overhead image, we propose using a convolutional neural network (CNN) to generate a synthetic overhead image predicting the above-surface appearance of the sonar image contents. We then use this synthetic overhead image to register our observations to the provided global overhead image. Once registered, the transformation is introduced as a factor into a pose SLAM factor graph. We use a state-of-the-art simulation environment to perform validation over a series of benchmark trajectories and quantitatively show the improved accuracy of robot state estimation using the proposed approach. We also show qualitative outcomes from a real AUV field deployment. Video attachment: https://youtu.be/_uWljtp58ks
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