Experimental investigation of thermal processes in induction motor by physical modelling

A. Pugachev, A. Kosmodamianskiy
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引用次数: 1

Abstract

The mathematical and physical modelling are shown to be required to investigate temperature condition of traction induction motors on locomotives. The physical model of traction and auxiliary drive of locomotive developed and constructed to investigate the thermal and electromechanical and control processes is presented. The technique and results of experimental investigation of thermal processes of heating and cooling in the 14 kW induction motor fed by frequency converter with scalar control and IR-compensation under the low values of the stator current frequency and rotor speed are presented. The rotor squirrel-cage rings of the induction motor are determined to be most stressed by overheating under the stator current frequency closed to null, the stator end winding on the side opposite to air supply becomes the most overheated unit of the induction motor under higher values of the stator current frequency.
感应电机热过程的物理模拟实验研究
研究机车牵引感应电动机的温度工况,需要建立数学和物理模型。为研究机车的热力、机电和控制过程,建立了机车牵引和辅助传动的物理模型。本文介绍了在低定子电流频率和低转子转速条件下,采用标量控制和红外补偿的变频器驱动的14kw异步电动机的加热和冷却热过程的实验研究方法和结果。在定子电流频率接近于零的情况下,感应电动机转子鼠笼环的过热应力最大,在较高的定子电流频率下,与送风相对的一侧定子端绕组成为感应电动机过热最严重的单元。
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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