会议论文详细信息
Winter School on Continuous Media Mechanics
A search for optimal parameters of resonance circuits ensuring damping of electroelastic structure vibrations based on the solution of natural vibration problem
Oshmarin, D.^1 ; Sevodina, N.^1 ; Iurlov, M.^1 ; Iurlova, N.^1
Institute of Continuous Media Mechanics UB RAS, Acad. Korolev St. 1, Perm
614013, Russia^1
关键词: Dissipative properties;    External resonance;    Mathematical formulation;    Parallel-connected;    Piezoelectric elements;    Resonance circuits;    Structure vibration;    Vibration frequency;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/208/1/012030/pdf
DOI  :  10.1088/1757-899X/208/1/012030
来源: IOP
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【 摘 要 】

In this paper, with the aim of providing passive control of structure vibrations a new approach has been proposed for selecting optimal parameters of external electric shunt circuits connected to piezoelectric elements located on the surface of the structure. The approach is based on the mathematical formulation of the natural vibration problem. The results of solution of this problem are the complex eigenfrequencies, the real part of which represents the vibration frequency and the imaginary part corresponds to the damping ratio, characterizing the rate of damping. A criterion of search for optimal parameters of the external passive shunt circuits, which can provide the system with desired dissipative properties, has been derived based on the analysis of responses of the real and imaginary parts of different complex eigenfrequencies to changes in the values of the parameters of the electric circuit. The efficiency of this approach has been verified in the context of natural vibration problem of rigidly clamped plate and semi-cylindrical shell, which is solved for series-connected and parallel -connected external resonance (consisting of resistive and inductive elements) R-L circuits. It has been shown that at lower (more energy-intensive) frequencies, a series-connected external circuit has the advantage of providing lower values of the circuit parameters, which renders it more attractive in terms of practical applications.

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