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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Multi-objective optimization of a triple layer piezoelectric bender with a flexible extension using genetic algorithm
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Multi-objective optimization of a triple layer piezoelectric bender with a flexible extension using genetic algorithm

机译:基于遗传算法的灵活延伸三层压电弯剂的多目标优化

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摘要

This article presents an electromechanical analysis for a piezoelectric bimorph actuator with a flexible extension, which is used to increase the tip deflection. The performance measuring attributes of such an actuator are derived, and a genetic algorithm is used for multi-objective optimization. The analysis reveals that for a thick flexible extension, the length of the extension provides Pareto optimal solutions for multi-objective optimization. The analysis also shows that as the thickness of the flexible extension decreases, the Pareto optimal solutions converge to a single solution for multi-objective optimization. We have considered nonlinear deflection behavior of piezoelectric materials at high electric fields, and series and parallel electrical connections in the analysis.
机译:本文为具有柔性延伸的压电双灯泡致动器提供了一种机电分析,其用于增加尖端偏转。 导出这种致动器的性能测量属性,并且遗传算法用于多目标优化。 该分析显示,对于厚的灵活延伸,扩展的长度为多目标优化提供了Pareto最佳解决方案。 该分析还表明,随着柔性延伸的厚度降低,Pareto最佳解决方案会聚到用于多目标优化的单个解决方案。 我们已经考虑了在高电场的压电材料的非线性偏转行为,以及分析中的串联和平行电连接。

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