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Nonlinear forced oscillation in a magnetically levitated system: the effect of the time delay of the electromagnetic force

机译:磁悬浮系统中的非线性强制振荡:电磁力时间延迟的影响

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摘要

Vibration analysis is important to explain and control the various kinds of vibration problems in magnetically levitated mechanical systems. This study investigates the vibration phenomena of the one-degree-of-freedom magnetically levitated system considering the effect of the nonlinearity of the electromagnet. It is difficult to apply the conventional nonlinear analysis techniques for the magnetically levitated system, since the magnetic force has a strong nonlinear characteristic that varies in inverse proportion to the square of the gap. This paper performs theoretical analyses using the shooting method, clarifies the stability and bifurcation characteristics, and verifies them experimentally. We conclude that the shape of the resonance curve becomes soft-type, superharmonic resonances occur, and period-doubling bifurcations occur at the main resonance and at superharmonic resonances.
机译:振动分析对于解释和控制磁悬浮机械系统中的各种振动问题非常重要。本文研究了考虑电磁体非线性影响的一自由度磁悬浮系统的振动现象。由于磁力具有与间隙的平方成反比变化的强大的非线性特性,因此难以将常规的非线性分析技术应用于磁悬浮系统。本文使用射击方法进行理论分析,阐明稳定性和分叉特性,并通过实验进行验证。我们得出的结论是,共振曲线的形状变为软型,发生了超谐波共振,并且在主共振和超谐波共振处出现了倍频分叉。

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