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Vibration Reduction of a High-$T_{c}$ Superconducting Magnetic Levitation System With an Autoparametric Vibration Absorber

机译:具有自动参量吸收器的高$ T_ {c} $超导磁悬浮系统的减振

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This research proposes reduction in the amplitude of a primary resonance generated in high-$T_{c}$ superconducting (HTSC) magnetic levitation system using an autoparametric vibration absorber. In general mechanical systems, reduction of the primary resonance or some nonlinear oscillations have been successfully studied using a kind of a nonlinear vibration absorber called an autoparametric vibration absorber through nonlinear coupling, which is called internal resonance. In this study, we assume that the rigid body vibrates only in the vertical direction $z$. On the rigid body a pendulum is fixed as an autoparametric vibration absorber. Through the nonlinear coupling that is generated, the amplitude of $z$ is reduced. The governing equations in $z$ and $theta$ directions are derived, and the possibility of energy transfer due to internal resonance is suggested. From the equations, analytical results predict that the amplitude of $z$ decreases when internal resonance occurs. Numerical results confirm this prediction.
机译:这项研究提出减少使用自动参量减振器的高$ T_ {c} $超导(HTSC)磁悬浮系统中产生的一次共振的幅度。在一般的机械系统中,已经通过使用一种称为“内部共振”的非线性减振器,即通过非线性耦合的自动参量减振器,成功地研究了一次共振或某些非线性振荡的减小。在这项研究中,我们假设刚体仅在垂直方向$ z $上振动。在刚体上固定有一个摆锤,作为自动参数减振器。通过产生的非线性耦合,减小了$ z $的幅度。推导了在$ z $和$ theta $方向上的控制方程,并提出了由于内部共振引起的能量转移的可能性。根据这些方程,分析结果预测,当发生内部共振时,$ z $的振幅会减小。数值结果证实了这一预测。

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