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Improving the transient response of magnetic bearings by the H DIA control

机译:通过H DIA控制提高磁轴承的瞬态响应

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This paper deals with an application of H control attenuating initial-state uncertainties to the magnetic bearing and examines the H control problem, which treats a mixed disturbance and an initial state uncertainty attenuation (DIA) control. The mixed H DIA problem supplies H controls with good transients and assures H controls of robustness against initial-state uncertainty. On the other hand, active magnetic bearings allow contract-free suspension of rotors and they are used for various industrial purposes. We derive a mathematical model of the magnetic bearing, which has complicated rotor dynamics and nonlinear magnetic property. Then we apply this proposed H DIA control for the magnetic bearing, and design a robust H controller both for exogenous disturbances and for initial state uncertainties of the plant. Experimental results show that the proposed robust control approach is effective for improving transient response and robust performance.
机译:本文涉及H 控制衰减磁轴承的初始状态的不确定性,并检查H 控制问题,这对处理混合干扰和初始状态不确定性衰减(DIA)控制。混合H DIA问题以良好的瞬态提供H 控制,并确保H 对初始状态不确定性的鲁棒性控制。另一方面,主动磁轴承允许转子的无合成悬架,它们用于各种工业用途。我们推出了磁轴承的数学模型,具有复杂的转子动力学和非线性磁性。然后我们应用这一提议的H 对磁轴承的DIA控制,并设计一种用于外源干扰的鲁棒H 控制器,以及用于植物的初始状态不确定性。实验结果表明,提出的鲁棒控制方法对于提高瞬态响应和鲁棒性能有效。

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