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Onboard dynamic-object detection and tracking for autonomous robot navigation with RGB-D camera

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arxiv 2303.00132 v4 pith:3YCLFDIU submitted 2023-02-28 cs.RO

classification cs.RO
keywords detectionmethodobstacledynamictrackingautonomousonboardrobot
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Deploying autonomous robots in crowded indoor environments usually requires them to have accurate dynamic obstacle perception. Although plenty of previous works in the autonomous driving field have investigated the 3D object detection problem, the usage of dense point clouds from a heavy Light Detection and Ranging (LiDAR) sensor and their high computation cost for learning-based data processing make those methods not applicable to small robots, such as vision-based UAVs with small onboard computers. To address this issue, we propose a lightweight 3D dynamic obstacle detection and tracking (DODT) method based on an RGB-D camera, which is designed for low-power robots with limited computing power. Our method adopts a novel ensemble detection strategy, combining multiple computationally efficient but low-accuracy detectors to achieve real-time high-accuracy obstacle detection. Besides, we introduce a new feature-based data association and tracking method to prevent mismatches utilizing point clouds' statistical features. In addition, our system includes an optional and auxiliary learning-based module to enhance the obstacle detection range and dynamic obstacle identification. The proposed method is implemented in a small quadcopter, and the results show that our method can achieve the lowest position error (0.11m) and a comparable velocity error (0.23m/s) across the benchmarking algorithms running on the robot's onboard computer. The flight experiments prove that the tracking results from the proposed method can make the robot efficiently alter its trajectory for navigating dynamic environments. Our software is available on GitHub as an open-source ROS package.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Deep Learning-Based Multi-Object Tracking: A Comprehensive Survey from Foundations to State-of-the-Art

    cs.CV 2025-06 conditional novelty 4.0 of 10

    A comprehensive survey that classifies modern MOT methods and shows, via cross-benchmark aggregation, that heuristic trackers dominate crowded linear-motion scenes while deep learning association methods dominate comp...

  2. Autonomous Navigation in Dynamic Human Environments with an Embedded 2D LiDAR-based Person Tracker

    cs.RO 2024-12 conditional novelty 4.0 of 10

    An embedded real-time 2D LiDAR person tracking pipeline, combining DR-SPAAM, Norfair, and TEB, achieves 85.45% average MOTA on three new datasets and improves collision avoidance on a quadruped robot.

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