Use of FEM modeling to optimize the design of induction motor

P. Pečínka, S. Kocman, V. Pečínková
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Abstract

This paper focuses on the use of FEM modeling applied to an induction machine for specific case from practice. A induction machine with squirrel rotor cage is most commonly used by a rotating electric machine in all industries. Its indisputable advantage is a relatively low purchase price, low costs and easy maintenance. Another significant advantage is the ability to power in direct online supply in less demanding applications and ability to power supply in variable speed drive mode for demanding applications. The motor must be designed correctly for proper operation. One of the very important parameters are its start-up parameters and its relationship to the driven equipment. This paper therefore deals mainly with the optimization of the rotor shape and number of rotor shapes with respect to the parameters of the speed - torque characteristic. The main reason for the creation of this paper is that during the development of motors, was a problem with the value of the starting torque. Specially we found problem by eight pole motors and therefore this problem is solved in the following text, when FEM modeling is used for its solution.
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采用有限元建模方法对感应电机进行优化设计
本文以实际应用为例,重点介绍了有限元建模在感应电机中的应用。鼠笼式转子感应电机是所有工业中最常用的旋转电机。其无可争辩的优势是购买价格相对低廉,成本低,维修方便。另一个显著的优点是能够在要求较低的应用中直接在线供电,以及能够在要求较高的应用中以变速驱动模式供电。电动机必须设计正确,才能正常运转。其中一个非常重要的参数是其启动参数及其与被驱动设备的关系。因此,本文主要从转速-转矩特性参数出发,研究转子形状和转子形状数目的优化问题。创建本文的主要原因是,在电机的发展过程中,是一个问题与启动转矩的值。特别是我们发现了八极电机的问题,因此本文采用有限元建模的方法解决了这一问题。
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