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Nonlinear analysis and analog simulation of a piezoelectric buckled beam with fractional derivative

机译:具有分数衍生的压电扣光束的非线性分析和模拟模拟

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摘要

In this article, an analog circuit for implementing fractional-order derivative and a harmonic balance method for a vibration energy harvesting system under pure sinusoidal vibration source is proposed in order to predict the system response. The objective of this paper is to discuss the performance of the system with fractional derivative and nonlinear damping (mu(b)). Bifurcation diagram, phase portrait and power spectral density (PSD) are provided to deeply characterize the dynamics of the system. These results are corroborated by the 0-1 test. The appearance of the chaotic vibrations reduces the instantaneous voltage. The pre-experimental investigation is carried out through appropriate software electronic circuit (Multisim). The corresponding electronic circuit is designed, exhibiting periodic and chaotic behavior, in accord with numerical simulations. The impact of fractional derivative and nonlinear damping is presented with detail on the output voltage and power of the system. The agreement between numerical and analytical results justifies the efficiency of the analytical technique used. In addition, by combining the harmonic excitation with the random force, the stochastic resonance phenomenon occurs and improves the harvested energy. It emerges from these results that the order of fractional derivative mu and nonlinear damping mu(b) play an important role in the response of the system.
机译:在本文中,提出了一种用于在纯正弦振动源下实现分数阶导数和用于振动能量收集系统的谐波平衡方法的模拟电路,以预测系统响应。本文的目的是讨论具有分数衍生物和非线性阻尼系统的系统的性能(MU(B))。提供分叉图,相位肖像和功率谱密度(PSD)以深入表征系统的动态。这些结果通过0-1试验证实。混沌振动的外观降低了瞬时电压。通过适当的软件电子电路(Multisim)进行预先实验研究。相应的电子电路设计,表现出周期性和混沌行为,符合数值模拟。分数衍生物和非线性阻尼的影响是关于系统的输出电压和功率的详细信息。数值和分析结果之间的协议证明了使用的分析技术的效率。另外,通过将谐波激发与随机力组合,随机共振现象发生并改善收获的能量。它从这些结果中出现,即分数衍生MU和非线性阻尼MU(B)在系统的响应中起重要作用。

著录项

  • 来源
    《European Physical Journal Plus》 |2017年第8期|共18页
  • 作者单位

    Univ Yaounde I Fac Sci Dept Phys Lab Mech Mat &

    Struct POB 812 Yaounde Cameroon;

    Univ Yaounde I Fac Sci Dept Phys Lab Mech Mat &

    Struct POB 812 Yaounde Cameroon;

    Univ Yaounde I Fac Sci Dept Phys Lab Mech Mat &

    Struct POB 812 Yaounde Cameroon;

    Univ Yaounde I Fac Sci Dept Phys Lab Mech Mat &

    Struct POB 812 Yaounde Cameroon;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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