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Analysis of Traction Characteristics in Single-Sided Linear Induction Motors with Composite Secondary Considering Magnetic Saturation and Hysteresis

机译:考虑磁饱和度和滞后的复合二次辅助电动机牵引特性分析

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Since the linear induction motor for urban transit usually works with a magnetically saturated secondary back-iron, this paper presents an analytical method to consider the nonlinear phenomena, e.g. ferromagnetic saturation and hysteresis, which are mathematically modeled and analyzed by an experimental method. By solving the differential equations to the qusi-3D field distribution in linear induction motors, analytical expressions in each part are obtained, which takes the ferromagnetic saturation and hysteresis in the secondary back-iron, skin effects, transversal and longitudinal end effects into account. Traction characteristics in the linear motor for motoring operation under constant-current excitation are calculated and validated with experimental results, and it shows a good agreement. The analysis is correct over a wide range of operating conditions, and its calculation accuracy is distinctly better than those without considering the nonlinearity.
机译:由于城市过境的线性感应电动机通常与磁饱和的次级背铁有效,因此本文提出了一种考虑非线性现象的分析方法,例如,考虑非线性现象。 铁磁饱和度和滞后,通过实验方法进行数学建模和分析。 通过求解线性感应电动机中的QUSI-3D场分布的微分方程,获得每个部件的分析表达,其考虑了次级背铁,皮肤效应,横向和纵向效应中的铁磁饱和度和滞后。 计算和验证在恒定电流激励下的电动机的线性电动机中的牵引特性,并用实验结果验证,表现出良好的一致性。 在广泛的操作条件下,分析是正确的,其计算精度明显比那些在不考虑非线性的情况下更好。

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