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首页> 外文期刊>Mechanical systems and signal processing >Modeling of a horizontal asymmetric U-shaped vibration-based piezoelectric energy harvester (U-VPEH)
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Modeling of a horizontal asymmetric U-shaped vibration-based piezoelectric energy harvester (U-VPEH)

机译:基于水平非对称U形振动的压电能量采集器(U-VPEH)的建模

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摘要

In this paper, we present a new horizontal asymmetric U-shaped vibration-based piezoelectric energy harvester (U-VPEH), which collects and converts destructive vibration energy into useful electrical energy. The finite element analysis is conducted on modal shape, the displacement, the mechanical energy, and the strain for both the linear and non-linear U-VPEH models. Mathematical governing equations are derived to investigate dynamic characteristics of the model. The harmonic balance method and state space form are utilized to conduct the analytical and theoretical analysis. The results show that the first and second eigenfrequencies are 17.167 Hz and 22.951 Hz for the nonlinear U-VPEH model while those are only 17.366 Hz and 25.124 Hz for the linear model. The nonlinear energy harvester model can narrow frequency band gap between the first two resonance modes. Moreover, the maximum voltage response is 8.743 V@16.5 Hz under the up-sweeping signals while the maximum voltage response is 14.18 V@15.41 Hz under the down-sweeping signals. The experimental results demonstrate that the voltage response and the resonance frequency of the U-VPEH agree with the analytical and theoretical analysis. The nonlinear horizontal asymmetric U-VPEH model exhibits a good performance on the energy transfer. This higher energy output, lower resonance frequency, and closer resonance peak can broaden the flexibility and practical usage of the energy harvester. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种新型的基于水平非对称U形振动的压电能量收集器(U-VPEH),该收集器将破坏性的振动能量收集并将其转换为有用的电能。对线性和非线性U-VPEH模型的模态形状,位移,机械能和应变进行了有限元分析。推导了数学控制方程,以研究模型的动态特性。利用谐波平衡法和状态空间形式进行分析和理论分析。结果表明,对于非线性U-VPEH模型,第一和第二特征频率分别为17.167 Hz和22.951 Hz,而对于线性模型,它们分别仅为17.366 Hz和25.124 Hz。非线性能量收集器模型可以缩小前两个共振模式之间的频带间隙。此外,在上扫频信号下,最大电压响应为8.743 V@16.5 Hz,而在下扫频信号下,最大电压响应为14.18 V@15.41 Hz。实验结果表明,U-VPEH的电压响应和谐振频率与理论分析吻合。非线性水平非对称U-VPEH模型在能量传递方面表现出良好的性能。这种更高的能量输出,更低的共振频率和更近的共振峰可以拓宽能量收集器的灵活性和实际使用范围。 (C)2018 Elsevier Ltd.保留所有权利。

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