Publication | Open Access
Indirect intelligent sliding mode control of a shape memory alloy actuated flexible beam using hysteretic recurrent neural networks
48
Citations
22
References
2012
Year
EngineeringMechanical EngineeringAdvanced Motion ControlIndirect IntelligentSoft RoboticsSystems EngineeringShape Memory AlloyNonlinear Vibration ControlSma Tendon TemperatureMaterials ScienceMechatronicsSolid MechanicsActuationMotion ControlFeedforward ControlMechanical SystemsStructural MechanicsVibration ControlFlexible BeamMechanics Of MaterialsFeed Forward (Control)
This paper introduces an indirect intelligent sliding mode controller (IISMC) for shape memory alloy (SMA) actuators, specifically a flexible beam deflected by a single offset SMA tendon. The controller manipulates applied voltage, which alters SMA tendon temperature to track reference bending angles. A hysteretic recurrent neural network (HRNN) captures the nonlinear, hysteretic relationship between SMA temperature and bending angle. The variable structure control strategy provides robustness to model uncertainties and parameter variations, while effectively compensating for system nonlinearities, achieving superior tracking compared to an optimized PI controller.
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