2020
DOI: 10.1155/2020/8138726
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Influence of Hysteresis on the Vibration Control of a Smart Beam with a Piezoelectric Actuator by the Bouc–Wen Model

Abstract: The hysteresis property in a smart structure has attracted much attention from researchers for several decades. Hysteresis not only affects the response precision of the smart structure but also threatens the stability of the system. This paper focuses on how the hysteresis property influences the control effect of vibration suppression for a smart beam. Furthermore, the Bouc–Wen model is adopted to describe the hysteresis property of a smart beam and the hysteresis parameters of the hysteresis model are ident… Show more

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Cited by 2 publications
(1 citation statement)
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“…System deviation resulting from hysteretic nonlinearity is regarded as tracking error e and is diminished by the feedback controller by comparing desired displacement y d and output displacement y to adjust control input v FB . Zhang (2020) expressed the hysteretic characteristic of a piezo-actuated beam by the classical BW model and analyzed the piezo-actuated beam’s stability by model reference adaptive control. The adaptive control law is designed by the error of output of piezo-actuated beam and reference model based on classical BW model in real-time.…”
Section: Control Strategiesmentioning
confidence: 99%
“…System deviation resulting from hysteretic nonlinearity is regarded as tracking error e and is diminished by the feedback controller by comparing desired displacement y d and output displacement y to adjust control input v FB . Zhang (2020) expressed the hysteretic characteristic of a piezo-actuated beam by the classical BW model and analyzed the piezo-actuated beam’s stability by model reference adaptive control. The adaptive control law is designed by the error of output of piezo-actuated beam and reference model based on classical BW model in real-time.…”
Section: Control Strategiesmentioning
confidence: 99%