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Modeling inverter-fed three-phase squirrel-cage induction machines including spatial and temporal harmonics

机译:建模逆变器馈电的三相鼠笼式感应电机,包括空间和时间谐波

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This paper presents a simulation model for voltage-fed 3-phase, unskewed, cage-rotor induction machines. The model includes the effects of machine harmonics due to winding distribution, slotting and saturation. The model demonstrates the influence of various harmonic quantities in the machine and calculates respective electrical and magnetic quantities like currents, flux linkages, magnetic field strength, torque and airgap force. It is an analytical model based on the 2-D machine geometry and material parameters. The model does not require simulated Finite Element Method (FEM) data. It is purposed to be used in ordinary differential equations environment models like Matlab Simulink. The model is validated by comparing simulated and measured stator currents and torque at different operating points. Additionally, stator and rotor currents, as well as torque and the magnetic flux density in the air-gap are compared with FEM simulations.
机译:本文介绍了用于电压3相,不合适,笼子转子感应机的仿真模型。该模型包括由于绕组分布,开槽和饱和而导致机器谐波的影响。该模型展示了机器中各种谐波量的影响,并计算电流,磁通键,磁场强度,扭矩和气隙力的各个电量和磁性量。它是基于二维机器几何和材料参数的分析模型。该模型不需要模拟有限元方法(FEM)数据。它被用来用于Matlab Simulink等常微分方程环境模型。通过比较模拟和测量的定子电流和不同操作点的扭矩来验证该模型。另外,将定子和转子电流以及气隙中的扭矩和磁通密度与FEM模拟进行比较。

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