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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Mathematical Optimization of Multilayer Piezoelectric Devices with Nonuniform Layers by Simulated Annealing
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Mathematical Optimization of Multilayer Piezoelectric Devices with Nonuniform Layers by Simulated Annealing

机译:模拟退火法优化不均匀多层压电器件的数学性能

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Multilayer ultrasonic transducers with layers of uniform design are in common use. It is also possible to devise such transducers in which the layer design is nonuniform. However, this adds many degrees of freedom to the transducer design, and conventional design techniques are inadequate to realize desired behavior or even to assess potential benefits. In this paper, a theoretical investigation of multilayer piezoelectric structures with nonuniform layers is reported. Results are presented from a study using computer code to solve the one-dimensional wave equation. It is first shown how multilayer structures with nonuniform layer thicknesses generate even and odd harmonics in their frequency response, suggesting that frequency response can be controlled by choice of layer thickness. However, this choice is complicated and it is impossible to analyze all possible combinations of layer thicknesses. Hence, use of the stochastic optimization technique of simulated annealing is reported. Two optimized transducer designs illustrate this. The first design maximizes uniformity of the fundamental, second, and third harmonics of pressure output, achieved to approximately plusmn3%. The results suggest additional bandwidth can be achieved for practical applications, as the presence of a finite response at the second harmonic frequency avoids the null usually associated with this frequency. This is further illustrated with the second optimized transducer design in the form of a three-layer 1-3 connectivity piezo- composite transducer for underwater operation.
机译:具有均匀设计层的多层超声换能器是常用的。还可以设计这样的换能器,其中层设计不均匀。然而,这为换能器设计增加了许多自由度,并且常规设计技术不足以实现期望的行为或什至不评估潜在的利益。本文报道了具有不均匀层的多层压电结构的理论研究。给出了使用计算机代码求解一维波动方程的研究结果。首先显示了具有不均匀层厚度的多层结构如何在其频率响应中产生偶次和奇次谐波,这表明可以通过选择层厚度来控制频率响应。但是,这种选择很复杂,不可能分析所有可能的层厚度组合。因此,报道了使用模拟退火的随机优化技术。两种优化的传感器设计对此进行了说明。第一种设计最大程度地提高了压力输出的基波,二次谐波和三次谐波的均匀性,达到大约正负3%。结果表明,对于实际应用,可以实现额外的带宽,因为在二次谐波频率处存在有限的响应,可以避免通常与该频率相关的零点。第二优化的换能器设计以用于水下操作的三层1-3连接压电复合换能器的形式进一步说明了这一点。

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