Improving Legibility of Motor Current Spectrum for Broken Rotor Bars Fault Diagnostics

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
B. Asad, T. Vaimann, A. Kallaste, A. Rassõlkin, A. Belahcen, M. N. Iqbal
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引用次数: 7

Abstract

Abstract In this paper, the harmonic contribution of the broken rotor bar of an induction machine is investigated using an effective combination of the fast Fourier transform (FFT) and a band stop filter. The winding, spatial, grid fed and fault-based harmonics are investigated. Since the fundamental component is the most powerful component as compared to the other frequencies, it decreases the legibility of spectrum, making logarithmic scale inevitable. It also remains a potential threat of burying the fault representative side band frequencies because of its spectral leakage. In this paper, a band stop Chebyshev filter is used to attenuate the fundamental component, which makes the spectrum clearer and easier to understand even on the linear scale. Its good transition band and low passband ripples make it suitable for attenuating the main supply frequency with low impact on the neighbouring side band frequencies. To study the impact of fault on magnetic flux distribution, simulation is done using finite element method with good number of mesh elements and very small step size. The line current is calculated and frequency spectrum is investigated to segregate the spatial and fault frequencies using the proposed technique. The results are further validated by implementing the algorithm on the data measured in the laboratory environment including the grid fed harmonics.
提高电机电流谱在断条故障诊断中的易读性
摘要本文采用快速傅里叶变换(FFT)和带阻滤波器的有效结合,研究了感应电机转子断条的谐波贡献。研究了绕组谐波、空间谐波、电网谐波和故障谐波。由于基波分量相对于其他频率是最强大的分量,它降低了频谱的易读性,使得对数标度不可避免。由于其频谱泄漏,它仍然是埋藏故障代表性边带频率的潜在威胁。本文采用带阻切比雪夫滤波器对基波分量进行衰减,使频谱在线性尺度上更清晰、更易于理解。它具有良好的过渡带和低的通带纹波,使其适合于衰减主电源频率,对相邻边带频率的影响很小。为了研究故障对磁通分布的影响,采用有限元方法进行了仿真,网格单元数多,步长小。利用该方法计算线路电流,研究频谱,分离空间频率和故障频率。将该算法应用于包括电网馈电谐波在内的实验室测量数据,进一步验证了算法的有效性。
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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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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