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Autonomous control and target tracking algorithm design for a quadrotor

Yibei Li, Yao Yu, Fenghua He, Xiaoming Hu

Year
2017
Citations
2

Abstract

In this paper, the task of Mission 7 of International Aerial Robotics Competition (IARC) is investigated. The quadrotor is required to autonomously navigate in a GPS-denied environment, and accomplish physical interaction with ground moving targets. In order to estimate the position of the quadrotor, a multi-sensor-compensation based method is designed and individual measurement errors are compensated. Also an extended Kalman filer (EKF) is utilized for attitude estimation. To accomplish the target tracking task, a path planning algorithm is designed under the constraints of quadrotor dynamics, and consecutive waypoint setpoints are generated. Then lower-level cascaded PID controllers are adopted to track the command waypoint. Finally, simulation and experimental results show the effectiveness and feasibility of the proposed methods.

Keywords

WaypointTask (project management)Computer scienceTracking (education)Compensation (psychology)Global Positioning SystemKalman filterPID controllerTracingExtended Kalman filter

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