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      Study on self‐adjustable variable pendulum tuned mass damper

      1 , 1 , 1 , 2
      The Structural Design of Tall and Special Buildings
      Wiley

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          Summary

          Pendulum tuned mass damper (PTMD) is usually used to control the horizontal vibration of a tall building. However, traditional PTMD is highly sensitive to frequency deviation and difficult to adjust its frequency. In order to improve this problem of traditional PTMD and protect a tall building more effectively, a novel PTMD, called self‐adjustable variable pendulum tuned mass damper (SAVP‐TMD), is proposed in this paper. On the basis of the acceleration ratio between TMD and primary structure, the SAVP‐TMD can retune itself by varying the length of the pendulum according to the improved acceleration ratio‐based adjustment algorithm. PTMD and primary structural accelerations are obtained from two accelerometers respectively, and the acceleration ratio is calculated in a microcontroller, then, the stepper motor will adjust the pendulum under the guidance of the microcontroller under a specific harmonic excitation. The improved acceleration ratio‐based adjustment algorithm is proposed and compared to solve the nonconvergent retuning problem. The SAVP‐TMD can be regarded as a passive damper including a frequency adjustment device. A single‐degree‐of‐freedom structure model is used to verify the effectiveness of SAVP‐TMD through both experimental study and numerical simulation. In order to further verify the effect of SAVP‐TMD in the MDOF structure, a five‐storey structure coupled with an SAVP‐TMD is proposed as a case study. The results of experiment, simulation, and case study all show that SAVP‐TMD can retune itself to the primary structural dominant frequency robustly, and the retuned PTMD has a better vibration control effect than the mistuned one.

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          Most cited references29

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          Short time Fourier transform algorithm for wind response control of buildings with variable stiffness TMD

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            Adaptive passive, semiactive, smart tuned mass dampers: identification and control using empirical mode decomposition, hilbert transform, and short-term fourier transform

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              Study on semi-active tuned mass damper with variable damping and stiffness under seismic excitations : SEMI-ACTIVE TUNED MASS DAMPER WITH VARIABLE DAMPING AND STIFFNESS

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                The Structural Design of Tall and Special Buildings
                Structural Design Tall Build
                Wiley
                1541-7794
                1541-7808
                January 2019
                October 18 2018
                January 2019
                : 28
                : 1
                Affiliations
                [1 ] Research Institute of Structural Engineering and Disaster Reduction Tongji University Shanghai China
                [2 ] State Key Laboratory of Disaster Reduction in Civil Engineering Tongji University Shanghai China
                Article
                10.1002/tal.1561
                b3debf9c-48df-47b8-bf77-1c4143ff366c
                © 2019

                http://onlinelibrary.wiley.com/termsAndConditions#vor

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