首页> 外文期刊>Journal of intelligent material systems and structures >The effect of Duffing-type non-linearities and Coulomb damping on the response of an energy harvester to random excitations
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The effect of Duffing-type non-linearities and Coulomb damping on the response of an energy harvester to random excitations

机译:Duffing型非线性和库仑阻尼对能量收集器对随机激励响应的影响

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Linear energy harvesters can only produce useful amounts of power when excited close to their natural frequency. Due to the uncertain nature of ambient vibrations, it has been hypothesised that such devices will perform poorly in real-world applications. To improve performance, it has been suggested that the introduction of non-linearities into such devices may extend the bandwidth over which they perform effectively. In this study, a magnetic levitation device with non-linearities similar to the Duffing oscillator is considered. The governing equations of the device are formed in which the effects of friction are considered. Analytical solutions are used to explore the effect that friction can have on the system when it is under harmonic excitations. Following this, a numerical model is formed. A differential evolution algorithm is used alongside experimental data to identify the relevant parameters of the device. The model is then validated using experimental data. Monte Carlo simulations are then used to analyse the effect of coulomb damping and Duffing-type non-linearities when the device is subjected to broadband white noise and coloured noise excitations.
机译:线性能量采集器仅在接近其自然频率激发时才能产生有用的功率。由于环境振动的不确定性,已经假设这种设备在实际应用中的性能会很差。为了提高性能,已经提出将非线性引入此类设备可以扩展其有效执行的带宽。在这项研究中,考虑了一种类似于Duffing振荡器的非线性磁悬浮装置。形成设备的控制方程,其中考虑了摩擦的影响。分析解决方案用于探讨在谐波激励下摩擦对系统的影响。之后,形成数值模型。与实验数据一起使用差分进化算法来识别设备的相关参数。然后使用实验数据验证模型。然后,当设备受到宽带白噪声和有色噪声激励时,使用蒙特卡罗模拟分析库仑阻尼和Duffing型非线性的影响。

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