Acoustic Response Synthesis Using Multiple Induced-Strain Actuators

Author:

Lin C. C.1,Cheng C. C.21

Affiliation:

1. Department of Mechanical Engineering, National Chung Cheng University, Chia-Yi, 621 Taiwan, R.O.C.

2. Mem.ASME

Abstract

A methodology to synthesize a predesignated acoustic response using a structure driven by multiple induced-strain actuators, e.g., piezoelectric (PZT) patches, is presented. The proposed approach of solving the inverse problem of structural acoustics, e.g., how to produce a known acoustic response from a given PZT-driven baffled plate, is accomplished using the impedance method. A dynamic model that assembles the PZT patch impedance, the host structure impedance, and the acoustic impedance is developed and then is utilized to synthesize a predesignated acoustic response. The proposed model includes the mass and stiffness of the actuator and thus provides a more accurate prediction when a structure is bonded with multiple actuators.

Publisher

ASME International

Subject

General Engineering

Reference19 articles.

1. Distributed Piezoelectric-Polymer Active Vibration Control of a Cantilever Beam;Bailey;AIAA J.

2. Use of Piezoelectric Actuators as Elements of Intelligent Structures;Crawley;AIAA J.

3. Piezoelectric Actuators for Distributed Vibration Excitation of Thin Plates;Dimitriadis;ASME J. Vibr. Acoust.

4. Formulation of a Beam Structure With Induced-Strain Actuators Based on an Approximated Linear Shear Stress Field;Lin

5. An Impedance Method for Dynamic Analysis of Active Material System;Liang;ASME J. Vibr. Acoust.

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