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Effects of White Noise Excitation on Tristable Piezoelectric Energy Harvesters with Asymmetric Potential Wells

机译:白噪声激励对不对称潜在井的拖曳式压电能收割机的影响

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摘要

Vibration energy harvesters (VEH) convert the energy of ambient random vibrations to electrical power in applications including autonomous powering of small scale devices. Theoretically, a VEH is represented by a system of two coupled differential equations, one each for the mechanical degree of freedom and the electrical degree of freedom. The interaction between noise and nonlinearity (by design) in a VEH is yet to be fully explored. This is of potential interest in the emerging concept of VEH using nanoelectromechanical systems (NEMS) since stochastic effects assume greater significance in the smaller dynamical scales. Allied with the recent focus on tristable harvesters, we investigate several aspects of the influence of random excitation on harvested power. It is shown that the unique effects of white noise excitation when compared with deterministic excitation include: (1) increase in harvested power by up to 14.28 percent (2) the advantages of asymmetrically designed potentials being achieved at much lower excitation levels and (3) the threshold values for inter-well oscillations being altered in favor of higher harvested power. Together, the results indicate that the advantages of tristable harvesters are enhanced due to white noise excitation; a feature of potential significance in NEMS based harvesters.
机译:振动能量收割机(VEL)将环境随机振动的能量转换为应用中的电力,包括小尺度装置的自主功率。从理论上讲,车辆由两个耦合微分方程的系统表示,每个系统用于机械自由度和自由度的电气度。车辆中噪声和非线性(通过设计)之间的相互作用尚未完全探索。这对使用纳米机电系统(NEMS)的车辆的新兴概念(NEM)具有潜在的兴趣,因为随机效应在较小的动态尺度中呈现更大的重要性。近期专注于追踪收割机,我们调查随机激发对收获功率影响的几个方面。结果表明,与确定性激发相比的白噪声激发的独特效果包括:(1)收获功率的增加高达14.28%(2)在低得多的励磁水平和(3)中实现了不对称设计的电位的优点井间振荡的阈值被改变,有利于更高收获的功率。结果表明,由于白噪声激发,扭转收割机的优点增强;基于NEM的收割机潜在意义的特征。

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