Vibration control of laminated composite cantilever beam operating in elevated thermal environments using fuzzy logic controller

dc.contributor.authorAkumalla, R.K.
dc.contributor.authorKallannavar, V.
dc.contributor.authorKattimani, S.
dc.date.accessioned2026-02-04T12:28:10Z
dc.date.issued2022
dc.description.abstractIn the present study, vibration control of laminated composite cantilever beam operating in the elevated thermal environment is achieved using combined experimental and numerical techniques. The impact hammer test is performed on the glass-epoxy cantilever beam at different temperatures. Experimentally recorded impact hammer force signals and piezoelectric accelerometer time-domain signals are processed through a system identification toolbox in MATLAB to obtain transfer functions of the plant models. A robust fuzzy logic controller is developed to accomplish the effective vibration control of a cantilever composite beam operating at different temperatures. The fuzzy logic controller with two inputs and one output is designed using the 20 if-then rules. The results are presented in both frequency and time domain, keeping the vibration attenuation of the fundamental frequency as the point of interest. The results indicate the proposed fuzzy logic control strategy can attenuate the vibrations of a cantilever composite beam for a wide temperature range. © The Author(s) 2022.
dc.identifier.citationNoise and Vibration Worldwide, 2022, 53, 46146, pp. 261-273
dc.identifier.issn9574565
dc.identifier.urihttps://doi.org/10.1177/09574565221093240
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/22603
dc.publisherSAGE Publications Inc.
dc.subjectCantilever beams
dc.subjectComposite beams and girders
dc.subjectComputer circuits
dc.subjectControllers
dc.subjectFuzzy logic
dc.subjectHammers
dc.subjectLaminating
dc.subjectNanocantilevers
dc.subjectTime domain analysis
dc.subjectVibration control
dc.subjectCantilever composite beams
dc.subjectComposite cantilever beams
dc.subjectEffects of temperature
dc.subjectExperimental techniques
dc.subjectFree-vibration tests
dc.subjectFuzzy logic controllers
dc.subjectImpact hammer tests
dc.subjectLaminated composite beam
dc.subjectNumerical techniques
dc.subjectThermal environment
dc.subjectLaminated composites
dc.titleVibration control of laminated composite cantilever beam operating in elevated thermal environments using fuzzy logic controller

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