Magnetic analysis and design method for solid rotor induction motors based on directly coupled field-circuit

Bi Daqiang, W. Xiang-heng, Li Decheng
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引用次数: 4

Abstract

A new method is presented for analysis and design of solid rotor induction motors in this paper. The main idea is illustrated as follows. Based on the terminal voltage as known condition and considering the end effect, a field-circuit directly coupled mathematical model of solid rotor motors is set up under sine stable condition. The method treats all the nodal potential and three currents of stator windings as unknown variables. By means of the results of the electromagnetic field analysis, the electromagnetic torque can be directly calculated by the numerical method, further other performances are calculated. The new method not only avoids the reiteration of terminal voltage, which is needed in the finite element method using current resource as known condition, but also cuts the complicated calculation of rotor parameters, which must be used in the equivalent circuit method. The finite element method is embedded in the design program so the accuracy of calculation is improved and the design programmer is adapted to solid rotor induction motors with deferent structure. The practical applications validate the new method.
基于直接耦合场路的固体转子感应电机磁力分析与设计方法
本文提出了一种分析和设计固体转子异步电动机的新方法。主要思想说明如下。在给定端电压条件下,考虑端面效应,建立了正弦稳定条件下固体转子电机的场路直接耦合数学模型。该方法将定子绕组的所有节点电位和三个电流作为未知变量。根据电磁场分析的结果,可以直接用数值方法计算电磁转矩,并进一步计算其他性能。该方法不仅避免了以电流资源为已知条件的有限元法中需要重复计算的端电压,而且省去了等效电路法中必须进行的复杂的转子参数计算。在设计程序中嵌入有限元方法,提高了计算精度,使设计程序适用于不同结构的固体转子感应电动机。实际应用验证了新方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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