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STOCHASTIC DYNAMICS OF A PIEZOELECTRIC ENERGY HARVESTER SUBJECTED TO LEVY FLIGHT EXCITATIONS

机译:水平飞行激励作用下的压电能量收集器的随机动力学

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Vibration energy harvesting seeks to exploit the energy of ambient random vibration for power generation, particularly in small scale devices. Piezoelectric transduction is often used as a conversion mechanism in harvesting and the random excitation is typically modeled as a Brownian stochastic process. However, non-Brownian excitations are of potential interest, particularly in the nonequilibrium regime of harvester dynamics. In this work, we investigate the averaged power output of a generic piezoelectric harvester driven by Brownian as well as (non-Brownian) Levy stable excitations both in the linear and the Duffing regimes. First, a coupled system of stochastic differential equations that model the electromechanical system are presented. Numerical simulation results (based on the Euler-Maruyama scheme) that show the average power output from the system under Brownian and Levy excitations are presented for the cases where the mechanical degree of freedom behaves as a linear as well as a Duffing oscillator. The results demonstrate that Levy excitations result in higher expectation values of harvested power. In particular, increasing the noise intensity leads to significant increase in power output in the Levy case when compared with Brownian excitations.
机译:振动能量收集试图利用环境随机振动的能量进行发电,尤其是在小型设备中。压电转导通常用作收获中的转换机制,随机激发通常建模为布朗随机过程。但是,非布朗激发是潜在的关注点,尤其是在收割机动力学的非平衡状态下。在这项工作中,我们研究了在线性和Duffing方式下由布朗氏和(非布朗氏)利维稳定激励驱动的普通压电收割机的平均功率输出。首先,提出了一种对机电系统进行建模的随机微分方程耦合系统。数值模拟结果(基于Euler-Maruyama方案)显示了在机械自由度表现为线性以及Duffing振子的情况下,在布朗和列维激发下系统平均输出功率。结果表明,征税激励导致更高的预期收获功率值。特别是,与布朗激发相比,在Levy情况下,增加噪声强度会导致功率输出显着增加。

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