2003 · 34 citations · 14 references
Artificial IntelligenceMotor LearningEngineeringMotor SkillCognitive RoboticsMotor ControlReinforcement Learning (Educational Psychology)Learning ControlReinforcement Learning (Computer Engineering)Robot LearningLinear Control TheoryNonlinear Control (Control Engineering)Cognitive ScienceRobotic Motor ControlNonlinear MappingsControl ScienceDeep Reinforcement LearningAutomationBusinessAdaptive ControlNonlinear Control (Business Management)Robotics
An extension of earlier work in the refinement of robotic motor control using reinforcement learning is described. It is no longer assumed that the magnitude of the state-dependent nonlinear torque is known. The learning controller learns about not only the presence of the torque, but also its magnitude. The ability of the learning system to learn this real-valued mapping from output feedback and reference input to control signal is facilitated by a stochastic algorithm that uses reinforcement feedback. A learning controller that can learn nonlinear mappings holds many possibilities for extending existing adaptive control research.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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Learning to Predict by the Methods of Temporal Differences
Richard S. Sutton · Machine Learning · 1988 · 3.9K citations · Full text
Learning to predict by the methods of temporal differences
Richard S. Sutton · Machine Learning · 1988 · 2.8K citations · Full text
Adaptive Control: the Model Reference Approach
A.S.I. Zinober · Electronics and Power · 1980 · 1.1K citations
Control Method, Engineering, Model-based Control Technique +5