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首页> 外文期刊>Applied Mathematical Modelling >Two different control strategies for 16-pole rotor active magnetic bearings system with constant stiffness coefficients
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Two different control strategies for 16-pole rotor active magnetic bearings system with constant stiffness coefficients

机译:具有恒定刚度系数的16极转子主动磁轴承系统的两种不同控制策略

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摘要

Rotor active magnetic bearing is one of the preferable supporting techniques for the highspeed rotating machinery. This article proposes a comparison between two different control strategies for the constant stiffness coefficients 16-pole rotor active magnetic bearings system (16-pole Rotor-AMBs). The first strategy is the Cartesian control in which the applied currents on the poles depend on the horizontal or vertical displacements of the rotor. The second strategy is the radial control in which the applied currents depend on the radial displacement of the rotor. Both strategies are based on the proportional-derivative (PD) control algorithm to make the rotor's vibrations track a zero reference point. The major novelty here is that we compare the two strategies to explore their advantages and disadvantages in controlling the 16-pole Rotor-AMBs. The analytical and numerical approximate predictions of the rotor's vibrations are extracted to show and verify the nonlinear dynamical behavior of the rotor based on the two methods. The local stability of the extracted solutions is analyzed via Hartman-Grobman theorem to conclude the stable and unstable solutions regions and the boundary between them. Various responses are included to show, in most conditions, that the radial control has a privilege over the Cartesian control in avoiding either the multi-stable solutions or the rub/impact forces occurrence between the rotating disk and the stator pole legs.
机译:转子主动磁轴承是高速旋转机械的优选支撑技术之一。本文提出了两种不同控制策略的恒定刚度系数16极转子主动磁轴承系统(16极转子-Ambs)的比较。第一策略是笛卡尔控制,其中杆上的施加电流取决于转子的水平或垂直位移。第二策略是径向控制,其中施加的电流取决于转子的径向位移。两种策略都基于比例衍生(PD)控制算法,使转子的振动跟踪零参考点。这里的主要新颖之处在于,我们比较两种策略来探索控制16极转子-MBS的优缺点。提取转子振动的分析和数值近似预测以显示基于两种方法的转子的非线性动力学行为。通过Hartman-Grobman定理分析提取的解决方案的局部稳定性,以得出稳定和不稳定的解决方案区域和它们之间的边界。包括在大多数条件下包括各种响应,即径向控制在避免多稳态的解决方案或旋转盘和定子杆腿之间的摩擦/冲击力发生时具有笛卡尔控制的特权。

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