On suppression of chaotic motions of a portal frame structure under non-ideal loading using a magneto-rheological damper

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Abstract

We consider chaotic motions of a portal frame structure under non-ideal loading. To suppress this chaotic behavior, a controlling scheme is implemented. The control strategy involves application of two control signals and nonlinear feedforward control to maintain a desired periodic orbit, and state feedback control to bring the system trajectory into the desired periodic orbit. Additionally, the control strategy includes an active magneto-rheological damper to actuate the system. The control force of the damper is a function of the voltage applied in the coil of the damper that is based on the force given by the controller.

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Tusset, A. M., Piccirillo, V., Balthazar, J. M., & Rebello Da Fonseca Brasil, R. M. L. (2015). On suppression of chaotic motions of a portal frame structure under non-ideal loading using a magneto-rheological damper. Journal of Theoretical and Applied Mechanics (Poland), 53(3), 653–664. https://doi.org/10.15632/jtam-pl.53.3.653

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