Piezoelectric transducer design via multiobjective optimization

B. Fu, T. Hemsel, J. Wallaschek, Ultrasonics 44, Supplement (2006) e747–e752.

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Journal Article | English
Author
Fu, Bo; Hemsel, TobiasLibreCat; Wallaschek, Jörg
Abstract
The design of piezoelectric transducers is usually based on single-objective optimization only. In most practical applications of piezoelectric transducers, however, there exist multiple design objectives that often are contradictory to each other by their very nature. It is impossible to find a solution at which each objective function gets its optimal value simultaneously. Our design approach is to first find a set of Pareto-optimal solutions, which can be considered to be best compromises among multiple design objectives. Among these Pareto-optimal solutions, the designer can then select the one solution which he considers to be the best one. In this paper we investigate the optimal design of a Langevin transducer. The design problem is formulated mathematically as a constrained multiobjective optimization problem. The maximum vibration amplitude and the minimum electrical input power are considered as optimization objectives. Design variables involve continuous variables (dimensions of the transducer) and discrete variables (the number of piezoelectric rings and material types). In order to formulate the optimization problem, the behavior of piezoelectric transducers is modeled using the transfer matrix method based on analytical models. Multiobjective evolutionary algorithms are applied in the optimization process and a set of Pareto-optimal designs is calculated. The optimized results are analyzed and the preferred design is determined.
Publishing Year
Journal Title
Ultrasonics
Volume
44, Supplement
Page
e747 - e752
ISSN
LibreCat-ID

Cite this

Fu B, Hemsel T, Wallaschek J. Piezoelectric transducer design via multiobjective optimization. Ultrasonics. 2006;44, Supplement:e747-e752. doi:10.1016/j.ultras.2006.05.087
Fu, B., Hemsel, T., & Wallaschek, J. (2006). Piezoelectric transducer design via multiobjective optimization. Ultrasonics, 44, Supplement, e747–e752. https://doi.org/10.1016/j.ultras.2006.05.087
@article{Fu_Hemsel_Wallaschek_2006, title={Piezoelectric transducer design via multiobjective optimization}, volume={44, Supplement}, DOI={10.1016/j.ultras.2006.05.087}, journal={Ultrasonics}, author={Fu, Bo and Hemsel, Tobias and Wallaschek, Jörg}, year={2006}, pages={e747–e752} }
Fu, Bo, Tobias Hemsel, and Jörg Wallaschek. “Piezoelectric Transducer Design via Multiobjective Optimization.” Ultrasonics 44, Supplement (2006): e747–52. https://doi.org/10.1016/j.ultras.2006.05.087.
B. Fu, T. Hemsel, and J. Wallaschek, “Piezoelectric transducer design via multiobjective optimization,” Ultrasonics, vol. 44, Supplement, pp. e747–e752, 2006.
Fu, Bo, et al. “Piezoelectric Transducer Design via Multiobjective Optimization.” Ultrasonics, vol. 44, Supplement, 2006, pp. e747–52, doi:10.1016/j.ultras.2006.05.087.

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