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Improved EL Model of Long Stator Linear Synchronous Motor Via Analytical Magnetic Coenergy Reconstruction Method

机译:通过分析磁共振重建方法改进了长定子线性同步电动机的EL模型

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摘要

Electromagnetic-suspension (EMS)-type maglev, based on long stator linear synchronous motor (LSLSM), suffers from the flux linkage and thrust ripple. This is due to the non-sinusoidal airgap magnetic field distribution caused by the slot effect and end effect. In this article, it is intended to address this issue by establishing a nonlinear mathematical model of LSLSM for real-time simulation and controller design, considering the spatial harmonics and core saturation. The Euler-Lagrange (EL) model is improved by means of coenergy and then applied to obtain the general equations of LSLSM. At first, the variation in coenergy in LSLSM regarding the mover position and stator current are analyzed, in the presence of spatial harmonics and core saturation. Afterward, an analytical model of coenergy is constructed by two Fourier basis vectors of mover position and torque angle, and a coefficient matrix polynomial of stator current magnitude. Then, a new model of LSLSM is derived based on the coenergy model and EL method. The parameters of the model can be obtained from the numerical data of coenergy in all operation ranges via finite-element analysis (FEA). Finally, the new model of LSLSM and its propulsion system are integrated in MATLAB/Simulink setup. The simulation results show that the improved EL model can achieve satisfactory accuracy compared with the FEA results well, whereas the computational efficiency is improved largely.
机译:基于长定子线性同步电动机(LSLSM)的电磁悬架(EMS)型Maglev源于磁通连杆和推力波纹。这是由于由槽效应和最终效果引起的非正弦气压磁场分布。在本文中,考虑到空间谐波和核心饱和度,它旨在通过建立LSLSM的非线性数学模型来解决这个问题,用于实时仿真和控制器设计。通过Coenergy改进了Euler-Lagrange(EL)模型,然后应用于获得LSLSM的一般方程。首先,在存在空间谐波和核心饱和的情况下,分析了关于动力位置和定子电流的LSLSM中的Coenergy的变化。之后,Coenergy的分析模型由两个傅立叶基的基础载体和扭矩角度构成,以及定子电流幅度的系数矩阵多项式。然后,基于CoEnergy模型和EL方法导出新的LSLSM模型。可以通过有限元分析(FEA)从所有操作范围内的Coenergy的数值数据获得模型的参数。最后,LSLSM的新模型及其推进系统集成在Matlab / Simulink设置中。仿真结果表明,与FEA相比,改进的EL模型可以达到令人满意的精度,而计算效率在很大程度上提高。

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