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Experimental Study of Flexible Plate Vibration Control by Using Two-Loop Sliding Mode Control Strategy
Abstract It is well known that intelligent control theory has been used in many research fields, novel modeling method (DROMM) is used for flexible rectangular active vibration control, and then the validity of new model is confirmed by comparing finite element model with new model. In this paper, taking advantage of the dynamics of flexible rectangular plate, a two-loop sliding mode (TSM) MIMO approach is introduced for designing multiple-input multiple-output continuous vibration control system, which can overcome uncertainties, disturbances or unstable dynamics. An illustrative example is given in order to show the feasibility of the method. Numerical simulations and experiment confirm the effectiveness of the proposed TSM MIMO controller.
Experimental Study of Flexible Plate Vibration Control by Using Two-Loop Sliding Mode Control Strategy
Abstract It is well known that intelligent control theory has been used in many research fields, novel modeling method (DROMM) is used for flexible rectangular active vibration control, and then the validity of new model is confirmed by comparing finite element model with new model. In this paper, taking advantage of the dynamics of flexible rectangular plate, a two-loop sliding mode (TSM) MIMO approach is introduced for designing multiple-input multiple-output continuous vibration control system, which can overcome uncertainties, disturbances or unstable dynamics. An illustrative example is given in order to show the feasibility of the method. Numerical simulations and experiment confirm the effectiveness of the proposed TSM MIMO controller.
Experimental Study of Flexible Plate Vibration Control by Using Two-Loop Sliding Mode Control Strategy
Yang, Jingyu (author) / Lin, Jiahui (author) / Liu, Yuejun (author) / Yang, Kang (author) / Zhou, Lanwei (author) / Chen, Guoping (author)
Journal of The Institution of Engineers (India): Series C ; 98 ; 437-452
2016-06-18
16 pages
Article (Journal)
Electronic Resource
English
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