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Acoustic to electric energy conversion using piezoelectric transducers.

机译:使用压电换能器将声音转换为电能。

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摘要

Presented is an analysis of a piezoelectric transduction system and a comparison to experimental data. A mathematical model is used to compare the external electric effects of an electric energy conversion system using piezoelectric ceramic transducers. The energy conversion is from electric to mechanical and back to electric.;The transduction system is modeled by an electromechanical circuit in which electrical and mechanical lumped elements represent the electrical and mechanical characteristics of the transducers. The analysis uses combinations of lumped parameter approximations of single transducers. The model is tested using a first set of transducers operating as an acoustic driver connected to a second set of transducers operating as a generator.;Two models are derived that consider the transfer of mechanical energy in different ways. The first model makes the approximation that the mechanical support is insignificant. This model allows mechanical energy transfer through one external surface. The second model considers the mechanical impedance of the mechanical support. This model allows mechanical energy transfer independently through opposite sides of the transducers. The mathematical model agrees well with the measurements. The measurements allow the determination of effective parameter values of material constants for the piezoelectric material.;The input electrical capacitance calculated using the model is compared to experimental measurements. Through these measurements, the parameters most sensitive to the measurements are approximated. Additional measurements of energy conversion are compared with the model adjusted by the parameter values taken from the capacitance comparisons. A value of effective stiffness is a third parameter that is adjusted to match the resonant frequency of the model and the experimental observations. These are the only adjustments to the model. The parameter adjustments required a 2% change in electrical permittivity, 30% change in electromechanical coupling, and 26% change in ideal static stiffness of the value of dynamic stiffness.;A second experiment simulates the second model that includes the impedance effects of the apparatus. The experiment performed to correlate the second model calculations proved to be far too lossy to be of practical value. Further, measurements showed undesirable nonlinear effects that were not modeled. The energy conversion experiment demonstrates a minimum of 85% efficiency, and a power density as high as 889 watts per kilogram of the piezoelectric material.
机译:提出了压电换能系统的分析和与实验数据的比较。使用数学模型来比较使用压电陶瓷换能器的电能转换系统的外部电效应。能量转换是从电到机械,再到电。转换系统由机电电路建模,其中机电集总元件代表换能器的机电特性。该分析使用单个传感器的集总参数逼近的组合。使用与声学驱动器一起工作的第一组换能器与作为发电机工作的第二组换能器相连的第一组换能器对模型进行测试。得出了两个模型,这些模型考虑了以不同方式传递机械能。第一个模型近似得出机械支撑微不足道。该模型允许机械能通过一个外表面传递。第二个模型考虑了机械支撑的机械阻抗。该模型允许机械能通过换能器的相对侧独立地传递。数学模型与测量结果非常吻合。这些测量值可以确定压电材料的材料常数的有效参数值。使用该模型计算出的输入电容与实验测量值进行比较。通过这些测量,可以得出对测量最敏感的参数。将能量转换的其他测量结果与通过电容比较得出的参数值调整的模型进行比较。有效刚度的值是第三个参数,将其调整为与模型的共振频率和实验观测值相匹配。这些是对模型的唯一调整。参数调整要求介电常数发生2%的变化,机电耦合发生30%的变化以及动态刚度值的理想静态刚度发生26%的变化;第二个实验模拟了第二个模型,该模型包含设备的阻抗效应。关联第二模型计算而进行的实验被证明太有损,没有实用价值。此外,测量结果显示出未建模的不良非线性影响。能量转换实验表明,最低效率为85%,并且功率密度高达每公斤压电材料889瓦。

著录项

  • 作者

    Hall, Joel Marcus.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Electrical engineering.;Electromagnetics.;Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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