Analysis of Demagnetization of Amorphous Alloy High-Speed Permanent Magnet Motor

Muhammad Usama Khan, Tong Wu, M. Zubair Rafique, Hongjin Li, Tariq Khan Khalil, Hameed Ullah
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引用次数: 1

Abstract

NdFeB has become the most common material for permanent magnet synchronous machines. Much research has been done on NdFeB-based permanent magnets (PMs) in the last few years (PMSMs). Although NdFeB PMs have a higher energy density and are more cost-effective than other kinds of magnets, their magnetization is very sensitive to PMSM working conditions, particularly temperature, where the irreversible demagnetization degree rises with time. As a result, it's critical to identify and diagnose demagnetization as soon as possible. This research provides a two-step analytical study dealing with uniform and partial demagnetization in this setting. A methodology based on the fast Fourier transform (FFT)-based PMSM motor current signature analysis (MCSA) is utilized to characterize demagnetization using a 2D finite element method. Subsequently, harmonics in fault instances are employed to identify demagnetization. The suggested two-step technique yielded findings identifying and characterizing demagnetization in certain cases. A local demagnetization creates particular sub-harmonics, but a uniform demagnetization increases current amplitude for a given torque.
非晶合金高速永磁电机的消磁分析
钕铁硼已成为永磁同步电机中最常用的材料。近年来,人们对钕铁硼基永磁体进行了大量的研究。虽然钕铁硼永磁材料比其他类型的磁体具有更高的能量密度和更高的成本效益,但其磁化强度对永磁同步电机的工作条件非常敏感,特别是温度,其不可逆退磁程度随着时间的推移而上升。因此,尽快识别和诊断退磁至关重要。本研究提供了一个两步分析研究处理均匀和部分消磁在这种情况下。采用基于快速傅里叶变换(FFT)的PMSM电机电流特征分析(MCSA)方法,采用二维有限元法对电机退磁特性进行了表征。然后,利用故障实例中的谐波来识别退磁。建议的两步技术在某些情况下产生了识别和表征退磁的发现。局部退磁会产生特定的次谐波,但均匀退磁会增加给定转矩的电流幅度。
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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