Voltage and evolutionary piezoelectric actuator design optimisation for static shape control of smart plate structures
This paper presents an iterative technique for multi-criteria design problem in structural shape control applications, which consist of voltage and piezoelectric actuator criteria designs based on the linear least square (LLS) method and the evolutionary piezoelectric actuator design optimisation (E...
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| Published in | Materials in engineering Vol. 28; no. 2; pp. 387 - 399 |
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| Main Authors | , |
| Format | Journal Article |
| Language | English |
| Published |
Elsevier Ltd
2007
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0261-3069 |
| DOI | 10.1016/j.matdes.2005.09.023 |
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| Abstract | This paper presents an iterative technique for multi-criteria design problem in structural shape control applications, which consist of voltage and piezoelectric actuator criteria designs based on the linear least square (LLS) method and the evolutionary piezoelectric actuator design optimisation (EPADO), respectively. The criterion identifies the overall effects of the error function on these two components of design criteria due to removing active piezoelectric materials. Two algorithms are proposed. One is the alternative voltage and evolutionary piezoelectric actuator design optimisation (AVEPADO). Another is voltage and evolutionary piezoelectric actuator design optimisation (VEPADO). Both algorithms aim to simultaneously optimise the active piezoelectric actuator configuration and the applied voltage. Numerical results are presented to show that the proposed algorithms are capable of determining both voltage distribution and piezoelectric actuators configuration in structural shape control problems. |
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| AbstractList | This paper presents an iterative technique for multi-criteria design problem in structural shape control applications, which consist of voltage and piezoelectric actuator criteria designs based on the linear least square (LLS) method and the evolutionary piezoelectric actuator design optimisation (EPADO), respectively. The criterion identifies the overall effects of the error function on these two components of design criteria due to removing active piezoelectric materials. Two algorithms are proposed. One is the alternative voltage and evolutionary piezoelectric actuator design optimisation (AVEPADO). Another is voltage and evolutionary piezoelectric actuator design optimisation (VEPADO). Both algorithms aim to simultaneously optimise the active piezoelectric actuator configuration and the applied voltage. Numerical results are presented to show that the proposed algorithms are capable of determining both voltage distribution and piezoelectric actuators configuration in structural shape control problems. |
| Author | Tong, Liyong Nguyen, Quan |
| Author_xml | – sequence: 1 givenname: Quan surname: Nguyen fullname: Nguyen, Quan – sequence: 2 givenname: Liyong surname: Tong fullname: Tong, Liyong email: ltong@aeromech.usyd.edu.au |
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| Cites_doi | 10.1088/0964-1726/13/3/003 10.1016/0263-8223(96)00041-4 10.1177/1045389X9800900407 10.1016/S0045-7949(99)00225-4 10.1016/S0263-8223(97)00092-5 10.1016/j.compstruct.2004.04.039 10.1177/002199839402800305 10.2514/2.1831 10.1177/1045389X9800900101 10.1016/S0020-7683(01)00049-X 10.1007/s004660000159 10.1177/1045389X9500600306 10.2514/3.20800 10.1006/jsvi.1993.1333 10.1115/1.3424154 10.1088/0964-1726/9/2/311 10.1016/S0263-8223(01)00144-1 |
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| Keywords | Piezoelectric actuators/sensors Shape control Sensitivity analysis Finite element analysis Composite plates Structural optimisation |
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| SubjectTerms | Composite plates Finite element analysis Piezoelectric actuators/sensors Sensitivity analysis Shape control Structural optimisation |
| Title | Voltage and evolutionary piezoelectric actuator design optimisation for static shape control of smart plate structures |
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