Application of a Dynamic Model based on a Network of Magnetically Coupled Reluctances to Rotor Fault Diagnosis in Induction Motors

F. Pedrayes, C. Rojas, M. F. Cabanas, M. Melero, G. A. Orcajo, J. Cano
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引用次数: 13

Abstract

The growing application of asynchronous motors in industrial processes that require high security and reliability levels has led to the development of multiple methods for early fault detection. The design and verification of these methods imply the use of complex mathematical models that allow the study of the influence produced by the machine operating conditions over the diagnosis procedure. The present paper describes a model for asynchronous motors based on a network of magnetically coupled reluctances. The aim of this model is its application to the study of the typical failures of this type of machine i. e. rotor asymmetries, air gap eccentricity, operation with an open phase etc. The dynamic properties of the model allow the simulation of the spatial evolution of all the motor variables, without neglecting complex phenomena such as magnetic saturation. Time domain analysis of air gap torque, as well as the calculation of current harmonic components is also possible. This initial study is aimed to check the accuracy and computation economy of the model. To do this, the model will be used to analyse a new diagnosis method for rotor fault detection. Simulations of healthy and faulty motors will be presented and the evolution of the machines main electrical and mechanical variables will be obtained.
基于磁耦合磁阻网络的动态模型在异步电动机转子故障诊断中的应用
异步电动机在需要高安全性和可靠性水平的工业过程中的应用越来越多,导致了多种早期故障检测方法的发展。这些方法的设计和验证意味着使用复杂的数学模型,以便研究机器运行条件对诊断过程产生的影响。本文描述了一种基于磁耦合磁阻网络的异步电动机模型。该模型的目的是将其应用于研究这类机器的典型故障,即转子不对称、气隙偏心、开相运行等。该模型的动态特性允许模拟所有电机变量的空间演变,而不会忽略磁饱和等复杂现象。气隙转矩的时域分析,以及电流谐波分量的计算也是可能的。初步研究的目的是检验模型的准确性和计算经济性。为此,该模型将用于分析转子故障检测的一种新的诊断方法。将对健康和故障电机进行仿真,并获得电机主要电气和机械变量的演变。
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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