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首页> 外文期刊>International Journal of Mechanical Sciences >Dynamics of a coupled nonlinear energy harvester under colored noise and periodic excitations
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Dynamics of a coupled nonlinear energy harvester under colored noise and periodic excitations

机译:彩色噪声下耦合非线性能量收割机的动态,周期激励

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Vibration energy harvester (VEH) has proven to be a favorable potential technique to supply continuous energy from ambient vibrations and its performance is greatly influenced by the design of potential structures. Motivated by the enhancement of energy harvesting performance, an electromechanical coupled VEH under colored noise and periodic excitations is investigated theoretically and numerically, and comparisons of the effects of mono-, bi- and tri-stable potentials are analyzed in detail. An uncoupled equivalent system, together with its joint probability density function (PDF), are derived by using the generalized harmonic transformation and the stochastic averaging based on energy-dependent frequency. For three kinds of different potentials, the effects of the periodic excitation, colored noise, potential shape and other crucial system parameters are explored on the dynamical behaviors. Results show that tri-stable VEH outperforms the mono- and bi-stable VEHs in mean harvested power and can achieve better stochastic resonance (SR) effect and higher power conversion efficiency by choosing the optimal system parameters, such as noise intensity, electromechanical coupling coefficient and time constant ratio. Moreover, the periodic excitation can change the topological characteristic of transient PDF, and larger periodic force can enhance SR effect but will weaken the power conversion efficiency. The theoretical results obtained by the proposed stochastic averaging method are well validated by numerical simulations.
机译:振动能量收割机(VAIL)已被证明是一种有利的潜在技术,可以从环境振动中供应连续的能量,并且其性能受到潜在结构的设计极大的影响。通过提高能量收集性能的动力,理论上和数值研究了有色噪声和周期激发下的机电耦合载体,并详细分析了单,双稳态电位的效果的比较。通过使用广义谐波变换和基于能量依赖频率的随机平均来导出不耦合的等效系统与其联合概率密度函数(PDF)一起导出。对于三种不同的电位,在动态行为上探讨了周期性激发,彩色噪声,潜在形状和其他关键系统参数的影响。结果表明,通过选择最佳系统参数,如噪声强度,机电耦合系数,可以通过选择最佳系统参数来实现更好的随机共振(SR)效应和更高的电力转换效率,实现更好的随机共振(SR)效应和更高的功率转换效率。和时间不变比率。此外,周期性激励可以改变瞬态PDF的拓扑特性,并且较大的周期性力可以增强SR效应,但会削弱功率转换效率。通过拟议的随机平均方法获得的理论结果通过数值模拟良好地验证。

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