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Uncertainty Quantification of Piezoelectric Energy Harvesters from Aeroelastic Vibrations

机译:气动弹性振动压电能量采集器的不确定度量化

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A stochastic approach is presented to evaluate the uncertainties associated with variations in design parameters of a piezoaeroelastic energy harvester. The sensitivities of the harvested power to variations in the load resistance, the eccentricity (distance between the center of mass and the elastic axis), and the nonlinear coeffcients are also determined. Moreover, the non-intrusive formulation of the polynomial chaos expansion in terms of the multivariate Hermite polynomials was employed to quantify the sensitivities in the harvested power and the plunge and pitch motions. The results show that the relationship between the input parameters and the harvested power is highly nonlinear. The results show also that the generated power is most sensitive to variations in the eccentricity and that the nonlinear coeffcient of the plunge spring is less influential than the nonlinear coeffcient of the torsional spring on the harvester’s performance.
机译:提出了一种随机方法来评估与压电气动弹性能量采集器的设计参数变化相关的不确定性。还确定了所采集功率对负载电阻,偏心率(质心与弹性轴之间的距离)以及非线性系数的变化的敏感性。此外,采用多元Hermite多项式的多项式混沌展开的非侵入式表示法来量化收获功率以及突降运动和俯仰运动的灵敏度。结果表明,输入参数与功率采集之间的关系是高度非线性的。结果还表明,所产生的功率对偏心率的变化最为敏感,并且插簧的非线性系数对扭转性能的影响小于扭簧的非线性系数。

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