Detection and Discrimination of Inter-Turn Short Circuit and Demagnetization Faults in PMSMs Based on Structural Analysis

S. Ebrahimi, M. Choux, Van Khang Huynh
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引用次数: 1

Abstract

This paper presents a fault diagnosis method based on structural analysis of permanent magnet synchronous motors (PMSMs), focusing on detecting and discriminating two of the most common faults in PMSMs, namely demagnetization and inter-turn short circuit faults. The structural analysis technique uses the dynamic mathematical model of the PMSM in matrix form to evaluate the system’s structural model. After obtaining the analytical redundancy using the over-determined part of the system, it is divided into redundant testable sub-models. Four structured residuals are designed to detect and isolate the investigated faults, which are applied to the system in different time intervals. Finally, the proposed diagnostic approach is numerically verified through a simulation of an inverter-fed PMSM and white Gaussian noise are added to the measured signals from the motor to verify its diagnosis performances.
基于结构分析的永磁同步电动机匝间短路和退磁故障检测与判别
本文提出了一种基于结构分析的永磁同步电动机故障诊断方法,重点对永磁同步电动机中两种最常见的故障——退磁故障和匝间短路故障进行检测和判别。结构分析技术采用矩阵形式的永磁同步电机动力学数学模型来评估系统的结构模型。利用系统的过定部分获得分析冗余后,将其划分为冗余的可测试子模型。设计了四种结构化残差来检测和隔离所研究的故障,并将其应用于不同时间间隔的系统。最后,通过逆变式永磁同步电机的仿真对所提出的诊断方法进行了数值验证,并在电机测量信号中加入高斯白噪声以验证其诊断性能。
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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