几何构型对强非理性非线性机械振子爆破振动的影响及其fpga实现

IF 2.2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Computational Electronics Pub Date : 2023-11-28 DOI:10.1007/s10825-023-02102-z
Herve Simo, Achille Ecladore Tchahou Tchendjeu, Fabien Kenmogne, Andre Chamgoue, Richard Ntenga
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引用次数: 0

摘要

本文分析了具有两个强不合理恢复力的机械振子在外力变化缓慢时的动态爆破问题。振荡器可以同时表现出平滑和不连续的特性,这取决于它的几何结构,这是由平滑参数决定的。采用快慢动力学分析方法,在考虑外部周期激励作为控制参数的情况下,研究了非摄动系统在光滑和不连续情况下的平衡稳定性和分岔图。分岔图显示两倍/两倍滞回周期,随着平滑参数的增加,滞回周期消失。此外,我们还研究了平滑参数和外部激励幅度对系统的影响。该研究探索了爆破振荡,并确定了两种正常模式——“褶皱/褶皱”和“节点/节点”。虽然在光滑和不连续情况下没有显著差异,但破裂振荡的振幅、形状和尖峰状态之间的时间间隔取决于光滑参数和外部激励振幅。此外,改变平滑参数可以产生或消除SD中的爆破振荡。为了验证数值模拟结果,本研究在现场可编程门阵列(FPGA)中实现了一个不连续振荡器的动力学,其结果与数值模拟一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Effect of geometry configuration on bursting oscillations of the mechanical oscillator with strong irrational nonlinearities and its FPGA-based implementation

This paper analyzes the dynamic bursting of a mechanical oscillator with two strong irrational restoring forces when the external force changes slowly. The oscillator can exhibit both smooth and discontinuous characteristics depending on its geometry configuration, which is determined by the smoothness parameter. Using the fast-slow dynamics analysis method, we explore the equilibrium stability and bifurcation diagram of the unperturbed system, considering the external periodic excitation as a control parameter for both smooth and discontinuous cases. The bifurcation diagram shows two-fold/fold hysteresis cycles, which disappear as the smoothness parameter increases. Additionally, we examine the effects of the smoothness parameter and amplitude of the external excitation on the system. The study explores bursting oscillations and identifies two normal patterns—"fold/fold" and "node/node". Although there is no significant difference between smooth and discontinuous cases, the amplitude, shape, and time interval between spiking states of bursting oscillation depend on the smoothness parameter and external excitation amplitude. Furthermore, changing the smoothness parameter can create or eliminate bursting oscillations in the SD. To validate the numerical simulation results, the study implements the dynamics of a discontinuous oscillator in Field Programmable Gate Arrays (FPGA), which yields results that align with the numerical simulations.

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来源期刊
Journal of Computational Electronics
Journal of Computational Electronics ENGINEERING, ELECTRICAL & ELECTRONIC-PHYSICS, APPLIED
CiteScore
4.50
自引率
4.80%
发文量
142
审稿时长
>12 weeks
期刊介绍: he Journal of Computational Electronics brings together research on all aspects of modeling and simulation of modern electronics. This includes optical, electronic, mechanical, and quantum mechanical aspects, as well as research on the underlying mathematical algorithms and computational details. The related areas of energy conversion/storage and of molecular and biological systems, in which the thrust is on the charge transport, electronic, mechanical, and optical properties, are also covered. In particular, we encourage manuscripts dealing with device simulation; with optical and optoelectronic systems and photonics; with energy storage (e.g. batteries, fuel cells) and harvesting (e.g. photovoltaic), with simulation of circuits, VLSI layout, logic and architecture (based on, for example, CMOS devices, quantum-cellular automata, QBITs, or single-electron transistors); with electromagnetic simulations (such as microwave electronics and components); or with molecular and biological systems. However, in all these cases, the submitted manuscripts should explicitly address the electronic properties of the relevant systems, materials, or devices and/or present novel contributions to the physical models, computational strategies, or numerical algorithms.
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