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Global nonlinear distributed-parameter model of parametrically excited piezoelectric energy harvesters

机译:参数激励压电能量收集器的全局非线性分布参数模型

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摘要

A global nonlinear distributed-parameter model for a piezoelectric energy harvester under parametric excitation is developed. The harvester consists of a unimorph piezoelectric cantilever beam with a tip mass. The derived model accounts for geometric, inertia, piezoelectric, and fluid drag nonlinearities. A reduced-order model is derived by using the Euler-Lagrange principle and Gauss law and implementing a Galerkin discretization. The method of multiple scales is used to obtain analytical expressions for the tip deflection, output voltage, and harvested power near the first principal parametric resonance. The effects of the nonlinear piezoelectric coefficients, the quadratic damping, and the excitation amplitude on the output voltage and harvested electrical power are quantified. The results show that a one-mode approximation in the Galerkin approach is not sufficient to evaluate the performance of the harvester. Furthermore, the nonlinear piezoelectric coefficients have an important influence on the harvester's behavior in terms of softening or hardening. Depending on the excitation frequency, it is determined that, for small values of the quadratic damping, there is an overhang associated with a subcritical pitchfork bifurcation.
机译:建立了参数激励下压电能量采集器的全局非线性分布参数模型。收割机由具有尖端质量的单压电晶片悬臂梁组成。导出的模型考虑了几何,惯性,压电和流体阻力非线性。通过使用Euler-Lagrange原理和高斯定律并实施Galerkin离散化来导出降阶模型。多尺度方法用于获得靠近第一主参量共振的尖端偏转,输出电压和收集的功率的解析表达式。量化了非线性压电系数,二次阻尼和激励幅度对输出电压和所收集的电功率的影响。结果表明,Galerkin方法中的单模逼近不足以评估收割机的性能。此外,非线性压电系数在软化或硬化方面对收割机的性能有重要影响。取决于激励频率,可以确定,对于较小的二次阻尼值,存在与亚临界干草叉分叉相关的突出部分。

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