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首页> 外文期刊>Journal of Sound and Vibration >Relative performance of a vibratory energy harvester in mono- and bi-stable potentials
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Relative performance of a vibratory energy harvester in mono- and bi-stable potentials

机译:单稳态和双稳态电势中振动能量采集器的相对性能

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Motivated by the need for broadband vibratory energy harvesting. many research studies have recentle proposed energy harvesters with nonlinear characteristics. Based on the shape of their poential function. such devices are classified as either mono- or bi-stable energy harvesters. This paper aims to investigate the relative performance of these two classes under similar excitations and electric loading conditions. To achieve this goal. an energy harvester consisting of a clamped-clamped piezoelectric beam bi-morph is considered. The shape of the harvester's potential function is altered by applying a static compressive axial load at one end of the beam. This permits operation in the mono-stable (pre-buckling) and bi-stable (post-buckling) configurations. For the purpose of performance comparison. the axial load is used to tune the harvester's oscillation frequencies around the static equilibria such that they have equal values in the mono- and bi-stable configurations. The harvester is subjected to harmonic base excitations of different magnitudes and a slowly varying frequency spanning a wide band around the tuned oscillation frequency. The output voltage measured across a purely resistive load is compared over the frequency range considered. Two cases are discussed; the first compares the performance when the bi-stable harvester has deep potential wells, while the second treats a bi-stable harvester with shallow wells. Both numerical and experimental results demonstrate the essential role that the potential shape plays in conjunction with the base acceleration to determine whether the bi-stable harvester can outperform the mono-stable one and for what range of frequencies. Results also illustrate that, for a bi-stable harvester with shallow potential wells. super-harmonic resonances can activate the inter-well dynamics even for a small base acceleration. thereby producing large voltages in the low frequency range.
机译:出于对宽带振动能量收集的需求。许多研究最近提出了具有非线性特性的能量收集器。根据其潜在功能的形状。这种设备被分为单稳态或双稳态能量收集器。本文旨在研究这两种类型在相似的激励和电负载条件下的相对性能。为了实现这个目标。考虑了由双压电晶片夹持的压电夹持器组成的能量收集器。收割机的势能函数的形状通过在梁的一端施加静态压缩轴向载荷来改变。这允许在单稳态(预屈曲)和双稳态(后屈曲)配置下运行。出于性能比较的目的。轴向载荷用于调整收割机在静态平衡附近的振荡频率,以使它们在单稳态和双稳态配置中具有相等的值。收割机受到不同幅度的谐波基极激励,并在已调谐的振荡频率周围的宽频带内缓慢变化。在考虑的频率范围内比较在纯电阻负载上测得的输出电压。讨论了两种情况;第一个比较双稳态收割机具有深潜井的性能,第二个比较浅稳定井的双稳态收割机。数值结果和实验结果均表明,潜在形状与基本加速度一起起着至关重要的作用,从而确定双稳态收割机是否能胜过单稳态收割机以及在何种频率范围内都能胜任。结果还表明,对于势阱较浅的双稳态收割机而言。即使在很小的基础加速度下,超谐谐振也可以激活井间动力学。从而在低频范围内产生大电压。

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