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Published on: March 6, 2019
Artificial Potential Field Based Trajectory Tracking for Quadcopter UAV Moving Targets.
1Department of Industrial Processes Automation, Faculty of Mechanical Engineering, Bialystok University of Technology, Wiejska St. 45C, 15-351 Bialystok, Poland.
This study introduces a new artificial potential field (APF) method for quadcopter drones to track moving targets online. The approach enhances flight control for precise trajectory tracking and target orientation.
Area of Science:
- Robotics
- Control Systems
- Artificial Intelligence
Background:
- Moving-target tracking is crucial for Unmanned Aerial Vehicle (UAV) applications.
- Cooperative robotics scenarios involve ground and aerial robots, with ground robots potentially acting as mobile landing pads.
Purpose of the Study:
- To propose a novel approach for position-tracking using artificial potential fields (APF) for quadcopter UAVs.
- To address the dynamic nature of online tracking problems while minimizing tracking error.
Main Methods:
- Utilized artificial potential fields (APF) for online position-tracking of quadcopter UAVs.
- Developed a new flight control system based on roll, pitch, and yaw angle control, driven by the velocity vector.
- Simulated the approach using the AR Drone 2.0 model.
Main Results:
- Demonstrated the applicability of APF for holonomic UAVs like quadcopters in dynamic tracking.
- Showcased that APF-controlled quadcopters exhibit non-holonomic behavior during 90° turns.
- Enabled UAVs and their cameras to orient towards the tracked target effectively.
Conclusions:
- The proposed APF-based method enables precise online tracking of moving targets by quadcopter UAVs.
- The novel flight control aligns the UAV's course and velocity with the APF-derived velocity vector.
- Future research can validate this method in real-world flights.
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