Optimal Control of the Gyroscopic Effects

V. Tamisier
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引用次数: 7

Abstract

On the rigid model of a rotating machine on active magnetic bearings (AMB), the gyroscopic effects appear as two derivative cross-coupling filters between the two planes of symmetry of the shaft, with a gain depending on the inertia and linearly varying with the rotational speed. Knowing that, we can add to the controller the opposite effect, under the form of two high-pass cross-coupling filters. After the presentation of the benchmark developed by the Societe de Mecanique Magnetique (S2M, Vernon, France), a complete model of AMB machine, combining a model for a rigid suspended rotor, to a modal model of the shaft, (reduced model built from the high-order nodal model extracted from an FEM software), is exposed. Our modeling approach presents several advantages: the model is simple to obtain, accurate and of a very reasonable order, so that it is easy to simulate. We use the model obtained in order to develop a control strategy for the gyroscopic effects. The method, based on the state-space model of the system, is a generalization of a another approach, also exposed, based on a transfer function model of the AMB machine. The advantage of the method is that the tuning of decentralized controllers is highly facilitated by the fact that the system, as seen by these controllers, is independent from the rotational speed
陀螺效应的最优控制
在主动磁轴承(AMB)旋转机械的刚性模型上,陀螺仪效应表现为轴的两个对称平面之间的两个导数交叉耦合滤波器,其增益取决于惯性,并随转速线性变化。知道了这一点,我们可以在两个高通交叉耦合滤波器的形式下,在控制器中添加相反的效果。在介绍了法国机械工业公司(S2M,弗农,法国)开发的基准后,展示了AMB机器的完整模型,包括刚性悬浮转子模型和轴的模态模型(从有限元软件中提取的高阶节点模型构建的简化模型)。该建模方法具有模型获取简单、精度高、排序合理等优点,便于模拟。我们利用得到的模型来制定陀螺效应的控制策略。该方法基于系统的状态空间模型,是基于AMB机的传递函数模型的另一种方法的推广。该方法的优点是分散控制器的调谐非常方便,因为这些控制器所看到的系统与转速无关
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