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System-level finite element analysis of piezoelectric energy harvesters with rectified interface circuits and experimental validation

机译:压电能收割机的系统级有限元分析,具有整流界面电路和实验验证

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摘要

The finite element method (FEM) has been widely used for numerical studies of piezoelectric energy harvesting (PEH) systems, through commercial finite element (FE) packages or specially developed FE formulations. As a convenient computational tool, FEM can deal with systems of high complexity and has evolved into a multiphasic solution to coupled problems in engineering. However, most of FE packages and formulations are limited to coupled-field simulations of PEH systems connected with a linear circuit. On the other hand, rectified circuits are a critical component in practical applications because electronic devices such as wireless sensor nodes and wearable electronics require a DC power supply. Based on the equivalent impedance analysis, this paper proposes a method to enable a coupled-field study of piezoelectric energy harvesters with the standard AC-DC interface circuit through an equivalent linear circuit. The proposed method enables FE packages and formulations to analyze, design, and optimize PEH harvesters at the system level, by either adding the capability of simulating rectified circuits, or reducing a nonlinear circuit interface simulation into a faster and more stable linear simulation that can be solved more conveniently. This equivalent linear circuit method was applied to a rectangular shaped bimorph beam harvester in ANSYS and validated experimentally. The results also match well with those obtained from a system-level analytical approach. As an application example, a comparison study was performed between the rectangular and triangular energy harvesters using FE packages and the proposed equivalent circuit, given the same natural frequency and material volume. In addition, the implementation of this method with FE formulations is briefly outlined and discussed.
机译:有限元方法(FEM)已广泛用于压电能量收集(PEH)系统的数值研究,通过商业有限元(FE)包装或特殊开发的Fe配方。作为一种方便的计算工具,有限元件可以处理高度复杂性的系统,并发展成多相溶液,以耦合工程问题。然而,大多数Fe封装和制剂都限于与线性电路连接的PEH系统的耦合场模拟。另一方面,整流电路是实际应用中的关键组件,因为诸如无线传感器节点和可穿戴电子设备的电子设备需要DC电源。基于等同的阻抗分析,本文提出了一种方法,以通过等效的线性电路实现具有标准AC-DC接口电路的压电能量收割机的耦合场研究。所提出的方法通过添加模拟整流电路的能力,使得在系统级别进行分析,设计和优化PEH收割机的FE包和制剂,或者将非线性电路接口模拟变为更快,更稳定的线性模拟更方便地解决了。将该等效线性电路方法应用于ANSYS的矩形形状的Bimorph光束收割机并通过实验验证。结果也与从系统级分析方法获得的结果匹配。作为应用示例,鉴于相同的固有频率和材料体积,使用Fe封装和所提出的等效电路在矩形和三角能量收割机之间进行比较研究。此外,简要概述并讨论了使用Fe配方的这种方法的实施。

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  • 来源
    《Mechanical systems and signal processing》 |2021年第4期|107440.1-107440.18|共18页
  • 作者单位

    Department of Mechanical Engineering Virginia Polytechnic Institute and State University Blacksburg VA 24061 USA;

    Department of Mechanical Engineering Technology Pennsylvania State University - Erie Erie PA 16563 USA;

    Department of Mechanical Engineering Virginia Polytechnic Institute and State University Blacksburg VA 24061 USA;

    Department of Mechanical Engineering Technology Pennsylvania State University - Erie Erie PA 16563 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy harvesting; Piezoelectric; AC-DC; Equivalent circuit; Finite element; ANSYS;

    机译:能量收集;压电;AC-DC;等效电路;有限元;ansys.;

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