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Passive Fault-Tolerant Control of a 2-DOF Robotic Helicopter

Manuel Alejandro Zuñiga, Luis Alejandro Ramírez, Gerardo Romero, E. Alcorta-García, Alejandro Arceo

Year
2021
Citations
6
Access
Open access

Abstract

The presence of faults in dynamic systems causes the potential loss of some of the control objectives. For that reason, a fault-tolerant controller is required to ensure a proper operation, as well as to reduce the risk of accidents. The present work proposes a passive fault-tolerant controller that is based on robust techniques, which are utilized to adjust a proportional-derivative scheme through a linear matrix inequality. In addition, a nonlinear term is included to improve the accuracy of the control task. The proposed methodology is implemented in the control of a two degrees of a freedom robotic helicopter in a simulation environment, where abrupt faults in the actuators are considered. Finally, the proposed scheme is also tested experimentally in the Quanser® 2-DOF Helicopter, highlighting the effectiveness of the proposed controller.

Keywords

Control theory (sociology)Controller (irrigation)ActuatorFault toleranceLinear matrix inequalityScheme (mathematics)Task (project management)Fault (geology)Computer scienceNonlinear system

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