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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Study on Nonlinear Dynamics and Chaos Suppression of Active Magnetic Bearing Systems Based on Synchronization
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Study on Nonlinear Dynamics and Chaos Suppression of Active Magnetic Bearing Systems Based on Synchronization

机译:基于同步的非线性动力学和混沌抑制的研究

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This study employed a variety of nonlinear dynamic analysis techniques to explore the complex phenomena associated with a nonlinear mathematical model of an active magnetic bearing (AMB) system. The aim was to develop a method with which to assume control over chaotic behavior. The bifurcation diagram comprehensively explicates rich nonlinear dynamics over a range of parameter values. In this study, we examined the complex nonlinear behaviors of AMB systems using phase portraits, Poincaré maps, and frequency spectra. Furthermore, estimates of the largest Lyapunov exponent based on the properties of synchronization confirmed the occurrence of chatter vibration indicative of chaotic motion. Thus, the proposed continuous feedback control approach based on synchronization characteristics eliminates chaotic oscillations. Finally, some simulation results demonstrated the feasibility and efficiency of the proposed control scheme.
机译:该研究采用各种非线性动态分析技术来探索与有源磁轴承(AMB)系统的非线性数学模型相关的复杂现象。 目的是制定一种方法来假设控制混沌行为。 分叉图全面地在一系列参数值中阐述了丰富的非线性动力学。 在这项研究中,我们检查了使用相位肖像,Poincaré地图和频谱的AMB系统的复杂非线性行为。 此外,基于同步性质的基于同步性质的最大Lyapunov指数的估计证实了喋喋不休的颤动振动的发生。 因此,基于同步特性的所提出的连续反馈控制方法消除了混沌振荡。 最后,一些仿真结果表明了所提出的控制方案的可行性和效率。

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