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Information Journal Paper

Title

ACTIVE CONTROL OF WIND-INDUCED BUILDING VIBRATION USING A LINEAR COUPLING STRATEGY

Pages

  35-53

Abstract

 The active control of building vibration is addressed. The aeroelastic lumped mass model of a building is designed to be used as the test bed for the active control system. The five stories lumped parameter model was modeled as a cantilever beam exhibiting planar vibration. A Linear Coupling Control (LCC) strategy was implemented to eliminate the VIBRATIONS. An active (moving) mass damper (AMD) was first designed and experimentally implemented to control the first mode vibration of the system. An alternative pendulum control system was then designed and implemented. The proposed pendulum, having three times smaller mass than the AMD, was found to be more effective in reducing the building VIBRATIONS.      

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    Cite

    APA: Copy

    HASHEMI, S.M., & GOLNARAGHI, M.F.. (2003). ACTIVE CONTROL OF WIND-INDUCED BUILDING VIBRATION USING A LINEAR COUPLING STRATEGY. ASIAN JOURNAL OF CIVIL ENGINEERING (BUILDING AND HOUSING), 4(1), 35-53. SID. https://sid.ir/paper/298605/en

    Vancouver: Copy

    HASHEMI S.M., GOLNARAGHI M.F.. ACTIVE CONTROL OF WIND-INDUCED BUILDING VIBRATION USING A LINEAR COUPLING STRATEGY. ASIAN JOURNAL OF CIVIL ENGINEERING (BUILDING AND HOUSING)[Internet]. 2003;4(1):35-53. Available from: https://sid.ir/paper/298605/en

    IEEE: Copy

    S.M. HASHEMI, and M.F. GOLNARAGHI, “ACTIVE CONTROL OF WIND-INDUCED BUILDING VIBRATION USING A LINEAR COUPLING STRATEGY,” ASIAN JOURNAL OF CIVIL ENGINEERING (BUILDING AND HOUSING), vol. 4, no. 1, pp. 35–53, 2003, [Online]. Available: https://sid.ir/paper/298605/en

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