Diagnosis of induction machines under non-stationary conditions by means of the spectral filter

F. Vedreno-Santos, M. Riera-Guasp, M. Pineda-Senchez
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引用次数: 3

Abstract

This paper introduces a new way to extract the fault components of a signal by means of a new proposed filter based on the Sampling Theorem and the properties of Discrete Fourier Transform. The proposed method is able to extract fault components either in steady-state or in transient conditions. This paper also proposes a new way to compute the energy of a signal in the frequency domain by means of the Plancherel's Theorem. Unlike the Discrete Wavelet Transform, which makes the filtering process in the time domain, the Discrete Fourier Transform allows the filtering process in the frequency domain. The use of the Discrete Fourier Transform makes the filtering process possible without applying any pretreatment to the current as it is done in the former works. As a consequence of the filtering process in the frequency domain and in order to reduce useless computations, in the current paper is also demonstrated the possibility of the computation of the energy of the extracted fault component in the frequency domain. The results are compared with the former and already published works in the area showing the good reliability of the new filtering process and energy computation in the frequency domain.
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非平稳条件下感应电机的频谱滤波诊断
本文介绍了一种基于采样定理和离散傅里叶变换性质的新滤波器提取信号故障分量的新方法。该方法既能提取稳态故障分量,又能提取暂态故障分量。本文还提出了一种利用Plancherel定理在频域计算信号能量的新方法。与离散小波变换在时域进行滤波不同,离散傅立叶变换允许在频域进行滤波。离散傅里叶变换的使用使得滤波过程可以不像在前一种工作中那样对电流进行任何预处理。由于在频域进行滤波处理,为了减少无用的计算,本文还演示了在频域计算提取的故障分量的能量的可能性。将计算结果与已有的研究成果进行了比较,结果表明新滤波方法和频域能量计算具有良好的可靠性。
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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