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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Stability of magnetic bearing-rotor systems having a central support backup bearing
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Stability of magnetic bearing-rotor systems having a central support backup bearing

机译:具有中央支撑备用轴承的电磁轴承-转子系统的稳定性

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The unperturbed (fully nonlinear) stability of a magnetic bearing-rotor system having a single central backup bearing near the middle of the shaft is analyzed under conditions of magnetic bearing(s) failure for zero gravity using the Lyapunovsecond (direct) method; these results are shown to apply with gravity, based on observed similiaries of the nonlinear Lagrangian equations. These are completely general stability criteria for practical values of system parameters and conditions of systemoperation and failure. It turns out that the center-backup bearing configuration has some considerable advantages over conventional designs: in addition to known results for stability and instability, the system can be stable when one or both magneticbearings fail (has negative stiffness). This "temporary stability" depends upon inherent gyroscopic forces and may be lost when dissipative forces are introduced. The results are applicable to other gyroscopic systems.
机译:使用Lyapunovsecond(直接)方法,在零重力的电磁轴承失效条件下,分析了在轴心附近具有单个中央备用轴承的电磁轴承-转子系统的稳定(完全非线性)稳定性;根据非线性拉格朗日方程的类似观察结果,这些结果显示适用于重力。这些是系统参数的实际值以及系统运行和故障条件的完全通用的稳定性标准。事实证明,中心-备用轴承配置与常规设计相比具有一些相当大的优势:除了已知的稳定性和不稳定性结果之外,当一个或两个磁性轴承失效(具有负刚度)时,系统也可以保持稳定。这种“暂时稳定性”取决于固有的陀螺力,并且在引入耗散力时可能会丢失。该结果适用于其他陀螺仪系统。

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