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Hybrid Stabilization of Closed Orbits for a Class of Underactuated Mechanical Systems

L. Cuñat Navarro, Manfredi Maggiore

Year
2024
Citations
2

Abstract

This paper presents a hybrid controller to stabilize a class of closed orbits for mechanical systems with degree of underactuation one. The controller has a hierarchical structure whereby at the low level, a smooth feedback enforces a virtual holonomic constraint in a family, while at the high level a supervisor selects from within the family the constraint to be enforced. To illustrate these ideas, the controller is first used to stabilize oscillations for the acrobot in a manner reminiscent of a child pumping energy on a swing, and then to induce an oscillatory motion in a brachiating robot so as to make its arms bridge the gap between two consecutive handholds.

Keywords

UnderactuationControl theory (sociology)Class (philosophy)Mechanical systemControl engineeringComputer scienceEngineeringRobotControl (management)Artificial intelligence

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