Squirrel Cage Induction Motor Design and the Effect of Specific Magnetic and Electrical Loading Coefficient

A. Yetgin, M. Turan, Barış Cevher, A. Çanakoğlu, Ayhan Gün
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引用次数: 6

Abstract

3-phase induction motors are widely used in industrial applications such as pumps, blowers, compressors, conveyors, etc. In addition, single-phase motors also have domestic use. For this reason, the design of the induction motor is of great importance. During the design, according to the parameters given as input, there are many situations that are contradictory to each other in order to achieve the goal. For example, if high efficiency is required, the motor size and the price will increase, and if lower price is required, other performance characteristics should be ignored. In the practical design of an induction motor, the designer has to comply with a number of constraints because of the large number of input variables. For this reason manual calculation becomes a very long and difficult process. To overcome this tiresome process, it is necessary to create a computer aided program or simulation model to determine the induction motor design parameters. In induction motor design, many parameters directly affect motor performance. Therefore, the selection of these parameters is of great importance. The C 0 coefficient, which takes place in the first steps of the design process, also has a great influence on the motor design. In this paper, a program for optimizing design of 3-phase induction motors written in MATLAB is presented. The structure of the program is modular and therefore can be modified for the various requirements of the induction motor design. C 0 constant (output coefficient), one of the design parameters, also varies with some other parameters. The most important ones are the specific electrical loading coefficient ( A 1 ) and the specific magnetic loading coefficient ( B av ), making dramatic effect on the output coefficient. The effect of the variation of the C 0 constant on the performance of the induction motor was investigated in the study. Stator inner and outer diameter, stack length, stator and rotor slot parameters, equivalent circuit parameters, losses and efficiency was obtained according to the change of B av and A 1 values. The obtained results are given and interpreted in tables and graphs.
鼠笼式感应电动机的设计及比磁、电负载系数的影响
三相感应电动机广泛应用于泵、鼓风机、压缩机、输送机等工业应用中。此外,单相电机在国内也有使用。因此,异步电动机的设计就显得尤为重要。在设计过程中,根据给定的参数作为输入,为了实现目标,会出现许多相互矛盾的情况。例如,如果要求高效率,则电机尺寸和价格会增加,而如果要求更低的价格,则应忽略其他性能特征。在感应电动机的实际设计中,由于输入变量较多,设计人员必须遵守许多约束条件。由于这个原因,人工计算成为一个非常漫长和困难的过程。为了克服这一繁琐的过程,有必要创建计算机辅助程序或仿真模型来确定感应电动机的设计参数。在异步电机设计中,许多参数直接影响电机的性能。因此,这些参数的选择是非常重要的。c0系数发生在设计过程的第一步,对电机的设计也有很大的影响。本文介绍了用MATLAB编写的三相异步电动机优化设计程序。该程序的结构是模块化的,因此可以根据感应电机设计的各种要求进行修改。c0常数(输出系数)是设计参数之一,也随其他一些参数而变化。其中最重要的是比电负载系数(a1)和比磁负载系数(bav),它们对输出系数有很大的影响。研究了c0常数的变化对异步电动机性能的影响。根据bav和a1值的变化,得到了定子内外直径、堆长、定子和转子槽参数、等效电路参数、损耗和效率。得到的结果以表格和图表的形式给出并解释。
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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