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Equivalent Linearization of Bouc–Wen Hysteretic Model with Harmonic Input
Abstract Equivalent linear stiffness and damping coefficient are calculated for the Bouc–Wen hysteretic model with the input as a harmonic function. Analytical estimates of these quantities are provided after constructing the hysteretic loops. For two cases, the hysteretic loops are found in closed form, and for the other cases limiting forms of the loops under high amplitude and low amplitude excitations are studied. Correct scaling laws for the equivalent parameters are derived analytically which are subsequently verified by numerical simulation.
Equivalent Linearization of Bouc–Wen Hysteretic Model with Harmonic Input
Abstract Equivalent linear stiffness and damping coefficient are calculated for the Bouc–Wen hysteretic model with the input as a harmonic function. Analytical estimates of these quantities are provided after constructing the hysteretic loops. For two cases, the hysteretic loops are found in closed form, and for the other cases limiting forms of the loops under high amplitude and low amplitude excitations are studied. Correct scaling laws for the equivalent parameters are derived analytically which are subsequently verified by numerical simulation.
Equivalent Linearization of Bouc–Wen Hysteretic Model with Harmonic Input
Chakraborty, G. (Autor:in)
Journal of The Institution of Engineers (India): Series C ; 100 ; 907-918
04.03.2019
12 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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