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基于遗传算法的两相换能器设计优化的神经进化框架

Neuro-Evolutionary Framework for Design Optimization of Two-Phase Transducer with Genetic Algorithms.

作者信息

Zameer Aneela, Naz Sidra, Raja Muhammad Asif Zahoor, Hafeez Jehanzaib, Ali Nasir

机构信息

Department of Computer and Information Sciences, Pakistan Institute of Engineering and Applied Sciences, Nilore, Islamabad 45650, Pakistan.

Department of Electrical Engineering, Pakistan Institute of Engineering and Applied Sciences, Nilore, Islamabad 45650, Pakistan.

出版信息

Micromachines (Basel). 2023 Aug 27;14(9):1677. doi: 10.3390/mi14091677.

Abstract

Multilayer piezocomposite transducers are widely used in many applications where broad bandwidth is required for tracking and detection purposes. However, it is difficult to operate these multilayer transducers efficiently under frequencies of 100 kHz. Therefore, this work presents the modeling and optimization of a five-layer piezocomposite transducer with ten variables of nonuniform layer thicknesses and different volume fractions by exploiting the strength of the genetic algorithm (GA) with a one-dimensional model (ODM). The ODM executes matrix manipulation by resolving wave equations and produces mechanical output in the form of pressure and electrical impedance. The product of gain and bandwidth is the required function to be maximized in this multi-objective and multivariate optimization problem, which is a challenging task having ten variables. Converting it into the minimization problem, the reciprocal of the gain-bandwidth product is considered. The total thickness is adjusted to keep the central frequency at approximately 50-60 kHz. Piezocomposite transducers with three active materials, PZT5h, PZT4d, PMN-PT, and CY1301 polymer, as passive materials were designed, simulated, and statistically evaluated. The results show significant improvement in gain bandwidth compared to previous existing techniques.

摘要

多层压电复合换能器广泛应用于许多需要宽带宽进行跟踪和检测的应用中。然而,在100kHz频率以下高效操作这些多层换能器是困难的。因此,这项工作通过利用遗传算法(GA)与一维模型(ODM)的优势,对具有十个非均匀层厚度和不同体积分数变量的五层压电复合换能器进行建模和优化。ODM通过求解波动方程执行矩阵运算,并以压力和电阻抗的形式产生机械输出。在这个多目标多变量优化问题中,增益和带宽的乘积是需要最大化的目标函数,这是一个具有十个变量的具有挑战性的任务。将其转化为最小化问题,考虑增益带宽乘积的倒数。调整总厚度以使中心频率保持在大约50 - 60kHz。设计、模拟并统计评估了具有三种活性材料(PZT5h、PZT4d、PMN - PT)和CY1301聚合物作为无源材料的压电复合换能器。结果表明,与先前现有的技术相比,增益带宽有显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e2c/10535456/39d4184db880/micromachines-14-01677-g001.jpg

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