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Decoupled control of thrust and normal force in a double-layer single-sided linear induction motor

机译:双层单面线性感应电动机中推力和法向力的解耦控制

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In this paper, a modified force decoupling method for improved servo control of a magnetically suspended double-layer single-sided linear induction motor (LIM) is presented. In this study, the primary is magnetically suspended under and moved along the double-layer secondary which consists of an aluminum plate with a back-iron. In order to decoupled the normal and thrust force, analytical expressions for the forces as function of the slip frequency and the primary current are obtained by curve fitting on steady-state FEM results. From these steady-state force models, the required current amplitude and slip frequency are solved for given force setpoints. The setpoints are generated by a position controller which is designed based on a dynamical model of the LIM. The dynamical model is estimated by injecting noise into a transient FE-model and measurements. Transient FEM simulations and measurements show the effectiveness of the proposed controller and decoupling method when they are used to magnetically suspend and position the LIM.
机译:本文提出了一种改进的力解耦方法,用于改进磁悬浮双层单面线性感应电动机(LIM)的伺服控制。在这项研究中,初级绕组被磁悬浮在双层次级绕组下并沿其移动,该次级绕组由带有背铁的铝板组成。为了使法向力和推力解耦,通过对稳态有限元结果进行曲线拟合,获得了与滑差频率和初级电流有关的力的解析表达式。从这些稳态力模型中,可以为给定的力设定值求解所需的电流幅度和滑差频率。设定点由位置控制器生成,该位置控制器基于LIM的动力学模型进行设计。通过将噪声注入瞬态有限元模型并进行测量来估算动力学模型。瞬态FEM仿真和测量结果表明,所提出的控制器和去耦方法用于磁悬浮和定位LIM时是有效的。

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