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Research on anti-adsorption control in hybrid maglev system with permanents and electromagnets

机译:永磁与电磁混合磁悬浮系统的抗吸附控制研究

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Anti-adsorption control in hybrid maglev system with permanents and electromagnets was researched in this paper. The mathematical model of single-point suspension system was established, and proportional-integral-differential controller aimed to fixed-current suspension was designed firstly. In order to avoid hybrid magnet adsorbing the guideway, variation law of gap was used to estimate whether adsorption would occur in the future. The optimal negative current, which should be adopted when adsorption estimation was true, was calculated according to the formula of levitation force. This kind of anti-adsorption control method was applied in a practical hybrid maglev system, and its effect was proved based on appropriate area of state variables. The conclusion was drawn that suspension magnet was prevented from adsorbing guideway effectively under this control when suspension control system could work normally.
机译:研究了具有永磁体和电磁体的混合磁悬浮系统的抗吸附控制。建立了单点悬架系统的数学模型,并设计了针对定电流悬架的比例积分微分控制器。为了避免混合磁体吸附导轨,使用间隙变化规律来估计将来是否会发生吸附。根据悬浮力公式,计算了当吸附估计为真时应采用的最佳负电流。将这种抗吸附控制方法应用于实际的混合磁悬浮系统中,并通过适当的状态变量面积证明了其效果。得出的结论是,在悬架控制系统可以正常工作的情况下,在这种控制下可以有效地防止悬架磁体吸附导轨。

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