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      Swing Vibration Control of Suspended Structure Using Active Rotary Inertia Driver System: Parametric Analysis and Experimental Verification

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      Applied Sciences
      MDPI AG

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          Abstract

          The Active Rotary Inertia Driver (ARID) system is a novel vibration control system that can effectively mitigate the swing vibration of suspended structures. Parametric analysis is carried out using Simulink based on the mathematical model and the effectiveness is further validated by a series of experiments. Firstly, the active controller is designed based on the system mathematical model and the LQR (linear quadratic regulator) algorithm. Next, the parametric analysis is carried out using Simulink to study the key parameters such as the coefficient of the control algorithm, the rotary inertia ratio. Lastly, the ARID system control effectiveness and the parametric analysis results are further validated by the shaking table experiments. The effectiveness and robustness of the ARID system are well verified. The dynamic characteristics of this system are further studied, and the conclusions of this paper provide a theoretical basis for further development of such unique control system.

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          Most cited references40

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          An adaptive‐passive retuning device for a pendulum tuned mass damper considering mass uncertainty and optimum frequency

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            Optimal design and performance evaluation of systems with Tuned Mass Damper Inerter (TMDI) : Optimal Design and Performance of Tuned Mass Damper Inerter Systems

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              Parameter optimization and analysis of a vehicle suspension system controlled by magnetorheological fluid dampers

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                Author and article information

                Contributors
                Journal
                ASPCC7
                Applied Sciences
                Applied Sciences
                MDPI AG
                2076-3417
                August 2019
                August 02 2019
                : 9
                : 15
                : 3144
                Article
                10.3390/app9153144
                b10c66b4-f704-40ff-852b-1b77137064c2
                © 2019

                https://creativecommons.org/licenses/by/4.0/

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