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논문 기본 정보

자료유형
학술저널
저자정보
Kim, Byeongil (Powertrain CAE Team, Research & Development Division) Washington, Gregory N. (The Henry Samueli School of Engineering, University of California) Yoon, Hwan-Sik (Department of Mechanical Engineering, The University of Alabama)
저널정보
테크노프레스 Smart structures and systems Smart structures and systems 제11권 제6호
발행연도
2013.1
수록면
623 - 635 (13page)

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This paper investigates application of a control algorithm called model predictive sliding mode control (MPSMC) to active vibration suppression of a cantilevered aluminum beam. MPSMC is a relatively new control algorithm where model predictive control is employed to enhance sliding mode control by enforcing the system to reach the sliding surface in an optimal manner. In previous studies, it was shown that MPSMC can be applied to reduce hysteretic effects of piezoelectric actuators in dynamic displacement tracking applications. In the current study, a cantilevered beam with unknown mass distribution is selected as an experimental test bed in order to verify the robustness of MPSMC in active vibration control applications. Experimental results show that MPSMC can reduce vibration of an aluminum cantilevered beam at least by 29% regardless of modified mass distribution.

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