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Algorithm of Linear Induction Motor Control for Low Normal Force of Magnetic Levitation Train Propulsion System

机译:磁悬浮列车推进系统低法向力的线性感应电动机控制算法

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This paper presents the analyses and experimental results of a single-sided linear induction motor (SLIM) thrust and normal force for the propulsion of semi-high-speed magnetic levitation (maglev) trains. These trains are composed of a levitation system that uses electromagnetic suspension and a propulsion system that uses SLIMs. The propulsion system of maglev trains using SLIMs has better low noise and dynamic characteristics compared with those using rotators. However, it has nonlinear characteristics due to the effect of slip that occur in the secondary eddy-current induction process; the normal force generated by the SLIM can negatively affect the levitation control. Therefore, a new slip-control algorithm is proposed for the safe operation of maglev trains, reflecting the normal force of the motor in propulsion control. First, the SLIM thrust and normal force are analyzed through the finite-element method (FEM) for a precise analysis of the slips. Furthermore, a slip range with a low normal force was derived based on the FEM analysis results, and these results are reflected in the propulsion control algorithm. Finally, the new algorithm was validated by an application to a full-sized testing apparatus.
机译:本文介绍了单侧线性感应电动机(SLIM)推力和法向力对半高速磁悬浮(maglev)列车推进的分析和实验结果。这些列车由使用电磁悬挂的悬浮系统和使用SLIM的推进系统组成。与使用转子的磁悬浮列车的推进系统相比,使用SLIM的磁悬浮列车的推进系统具有更好的低噪声和动态特性。然而,由于二次涡流感应过程中产生的打滑效应,它具有非线性特性。 SLIM产生的法向力会对悬浮控制产生负面影响。因此,针对磁悬浮列车的安全运行,提出了一种新的滑移控制算法,该算法能反映电动机在推进控制中的法向力。首先,通过有限元方法(FEM)对SLIM推力和法向力进行分析,以精确分析滑移。此外,基于有限元分析结果得出法向力小的滑移范围,并将这些结果反映在推进控制算法中。最后,新算法通过在大型测试设备上的应用进行了验证。

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