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Vibration control of a hybrid magnetic bearing using an adaptive sliding mode technique

机译:使用自适应滑模技术振动控制混合磁轴承

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This paper presents a consideration of the nonlinear modelling and vibration control of a hybrid magnetic bearing (HMB). The dynamics of the system are highly nonlinear in nature and exhibit parameter uncertainty. A sliding mode controller (SMC), well known for its robustness against parameter variation and external disturbance attenuation, was used, in the form of an adaptive sliding mode controller (ASMC), chosen because the ASMC operates in the absence of knowledge of the upper bounds of the system uncertainty, and its tracking performances are guaranteed. The HMB-ASMC system was simulated with varying system parameters and the performance of the controller is discussed. A laboratory prototype of the HMB system was built and experiments were carried out with the ASMC controller, which was found to offer acceptable vibration characteristics and disturbance attenuation.
机译:本文介绍了混合动力磁轴承(HMB)的非线性建模和振动控制。 系统的动态是性质上的高度非线性,并且表现出参数不确定性。 在自适应滑模控制器(ASMC)的形式中使用了一种滑模控制器(SMC),以其对参数变化和外部干扰衰减的鲁棒性和外部干扰衰减,所以选择的,因为ASMC在没有上部知识的情况下操作 保证了系统不确定性的界限及其跟踪性能。 利用不同的系统参数模拟HMB-ASMC系统,并讨论了控制器的性能。 建立了HMB系统的实验室原型,并使用ASMC控制器进行了实验,该实验将被发现提供可接受的振动特性和扰动衰减。

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