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A new approach of the induction motor parameters determination in short-circuit mode by 3D electromagnetic field simulation

机译:3D电磁场仿真在短路模式下的感应电动机参数的新方法

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Theoretical researches and simulation results, which based on numerical realization of the finite element method of three-dimensional transient mathematical model of the electrical and magnetic fields in induction motor which displayed the features of the processes of AC energy conversion in the experimental short-circuit mode are obtained. Through the implementation of the dynamic spatial model of electromagnetic fields by the finite element method and numerical simulation data of the short-circuit dynamic mode of the induction motor, the parameters taking into account the structural features of the stator and rotor, and the nonlinear properties of active materials in the multicomponent modeling domain of its substitution circuit are determined. It is proved, that the new approach to the determination of the substitution circuit parameters of induction motor based on simulation data field provides a significant increase in accuracy compared to conventional iterative-empirical methods.
机译:理论研究与仿真结果,基于电感电磁场三维瞬态数学模型有限元方法的数值实现,其在实验短路模式下的AC能量转换过程的特征获得。通过实施电磁场动态空间模型的有限元方法和电感电动机短路动态模式的数值模拟数据,参数考虑了定子和转子的结构特征,以及非线性特性确定了其替换电路的多组分建模领域的活性材料。事实证明,与仿真数据场的感应电动机替代电路参数确定的新方法提供了与传统的迭代实证方法相比的精度显着增加。

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