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Performance of a novel dual-magnet tri-stable piezoelectric energy harvester subjected to random excitation

机译:一种新型双磁铁三稳态压电能量收割机进行随机激励的性能

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Usually conventional nonlinear tri-stable piezoelectric energy harvesters (TPEHs) contain two external magnets, which make both the system structure and dynamic analysis more complex. Herein, a novel dual-magnet TPEH with only one external magnet is proposed. This TPEH consists of a rectangular magnet, a piezoelectric cantilever beam, a ring magnet and a base. Next, the lumped-parameter model of the TPEH is established to obtain the dynamic equation, circuit equation, magnetic force expression and potential function. The analysis of the magnetic force expression and potential function finds that the system degenerates from a tri-stable state to a bistable state, and then to a mono-stable state with the increase of magnet distance due to the changes of magnetic force. Subsequently, Runge-Kutta method is used to simulate the nonlinear dynamics and energy harvesting performance of the energy harvester under the filtered Gaussian white noise over the frequency range of 0-120 Hz. Simulation results shows that the harvester changes from intra-well movement to inter-well movement with a few transitions, and then to inter-well movement with many transitions as excitation level increases. Additionally, the output performance in the bi-stable state is better than that in the tri-stable state when the excitation is small, and the output performance in the tri-stable state is better than that in the bi-stable state when the excitation is large enough. The reason is that the depth and width of the outer potential wells in the tri-stable state are deeper and narrower, while the distance between the two outer wells in the tri-stable state is larger, when compared to the bi-stable state. Finally, designed experiments are carried out to determine the parameters in the dynamic equation and measure the energy harvesting performance of the TPEH. Experimental results are consistent with simulation results. This study suggests that it is practicable to use the dual-magnet structure for constructing a multi-stable piezoelectric energy harvester.
机译:通常,传统的非线性三稳定压电能量收割机(TPEHS)含有两个外部磁铁,这使得系统结构和动态分析更复杂。这里,提出了一种仅具有一个外部磁体的新型双磁体TPEH。该TPEH由矩形磁铁,压电悬臂梁,环形磁铁和底座组成。接下来,建立TPEH的集合参数模型,以获得动态方程,电路方程,磁力表达和潜在功能。磁力表达和潜在功能的分析发现,该系统从三稳态退化到双稳态状态,然后通过磁力的变化而随着磁体距离而增加的单稳态。随后,Runge-Kutta方法用于在0-120Hz的频率范围内模拟滤波高斯白噪声下的能量收割机的非线性动力学和能量收集性能。仿真结果表明,收割机从井内运动变为井间移动,几个过渡,然后与激发水平增加许多转换的井间移动。另外,双稳态状态下的输出性能优于三个稳定状态时的输出性能,并且在激励时的三稳态中的输出性能优于双稳态状态更好足够大。原因在于,与双稳态相比,三稳态中外势孔的深度和宽度更深刻和更窄,而在三稳态中的两个外孔之间的距离更大。最后,进行设计的实验以确定动态方程中的参数,并测量TPEH的能量采伐性能。实验结果与仿真结果一致。该研究表明,使用双磁体结构可以实现用于构建多稳定压电能量收割机的双磁体结构。

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