Applied Sciences · 2022 · 23 citations · 41 references
Altitude ControllerEngineeringAerial RoboticsAltitude ControlAerospace EngineeringUnmanned SystemAdaptive ControlSystems EngineeringFlying RobotFlight ControlNew Adaptive AttitudeRobot LearningLearning ControlRoboticsAerial RobotTrajectory Tracking
This research study presents a new adaptive attitude and altitude controller for an aerial robot. The proposed controlling approach employs a reinforcement learning-based algorithm to actively estimate the controller parameters of the aerial robot. In dealing with highly nonlinear systems and parameter uncertainty, the proposed RL-based adaptive control algorithm has advantages over some types of standard control approaches. When compared to the conventional proportional integral derivative (PID) controllers, the results of the numerical simulation demonstrate the effectiveness of this intelligent control strategy, which can improve the control performance of the whole system, resulting in accurate trajectory tracking and altitude control of the vehicle.
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The dynamics of reinforcement learning in cooperative multiagent systems
Caroline Claus, Craig Boutilier · 1998 · 1.1K citations
Benchmarking Deep Reinforcement Learning for Continuous Control
Yan Duan, Xi Chen, Rein Houthooft et al. · arXiv (Cornell University) · 2016 · 966 citations · Full text