非均匀层厚多层压电器件的模拟退火数学优化

A. Abrar, S. Cochran
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引用次数: 5

摘要

本文报道了具有非均匀层厚的多层压电结构的理论研究。我们的研究结果来自于基于矩阵操作求解一维波动方程的计算机代码的研究,并使用有限元分析验证。我们首先展示了具有非均匀层厚度的结构如何在其频率响应中产生偶数谐波以及由具有均匀层厚度的器件产生的奇谐波。我们发现,通过适当选择层厚度,可以对整个频率响应施加控制。然而,对于大多数换能器配置,频率响应与层厚度之间的关系非常复杂。为了克服这个问题,我们研究了模拟退火的随机优化技术。这使得换能器配置可以用成本函数表示所需的频率响应。这里报告的成本函数最大限度地提高了输出压力的基本谐波和第二谐波和第三谐波的均匀性,我们已经达到了大约/spl + usmn/3%。结果很有希望,并可能为水下声纳和生物医学成像的应用提供额外的带宽。为了说明它们的潜力,我们还描述了一种三层1-3连接的压电复合材料换能器,该换能器具有在基频和前两个谐波上延伸的强响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical optimisation of multilayer piezoelectric devices with non-uniform layer thicknesses by simulated annealing
We report a theoretical investigation of multilayer piezoelectric structures with non-uniform layer thicknesses. Our results come from a study of such structures using computer code based on solving the one-dimensional wave equation by matrix manipulation and validation using finite element analysis. We first show how structures with nonuniform layer thicknesses generate even harmonics in their frequency response as well as the odd harmonics generated by devices with uniform layer thicknesses. We have found that control can be exerted over the complete frequency response by appropriate choice of layer thickness. However, for most transducer configurations, the relationship between frequency response and layer thicknesses is very complicated. To overcome this, we have investigated the stochastic optimisation technique of simulated annealing. This allows a transducer configuration to be obtained with a desired frequency response expressed as a cost function. The cost function reported here maximises uniformity of the fundamental and second and third harmonics of output pressure, which we have achieved to approximately /spl plusmn/3%. The results are promising and may deliver additional bandwidth for applications in underwater sonar and biomedical imaging. To illustrate their potential, we also describe a three-layer 1-3 connectivity piezocomposite transducer with a strong response extending over the fundamental and first two harmonics.
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