LiDAR-OSM-Based Vehicle Localization in GPS-Denied Environments by Using Constrained Particle Filter

Author:

Elhousni MahdiORCID,Zhang Ziming,Huang XinmingORCID

Abstract

Cross-modal vehicle localization is an important task for automated driving systems. This research proposes a novel approach based on LiDAR point clouds and OpenStreetMaps (OSM) via a constrained particle filter, which significantly improves the vehicle localization accuracy. The OSM modality provides not only a platform to generate simulated point cloud images, but also geometrical constraints (e.g., roads) to improve the particle filter’s final result. The proposed approach is deterministic without any learning component or need for labelled data. Evaluated by using the KITTI dataset, it achieves accurate vehicle pose tracking with a position error of less than 3 m when considering the mean error across all the sequences. This method shows state-of-the-art accuracy when compared with the existing methods based on OSM or satellite maps.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference44 articles.

1. LOAM: Lidar Odometry and Mapping in Real-time;Zhang;Proceedings of the Robotics: Science and Systems,2014

2. Suma++: Efficient lidar-based semantic slam;Chen;Proceedings of the 2019 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS),2019

3. Deeplo: Geometry-aware deep lidar odometry;Cho;arXiv,2019

4. OverlapNet: a siamese network for computing LiDAR scan similarity with applications to loop closing and localization

5. Range Image-based LiDAR Localization for Autonomous Vehicles;Chen;arXiv,2021

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