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A Sparse Modulation Signal Bispectrum Analysis Method for Rolling Element Bearing Diagnosis

机译:滚动轴承故障诊断的稀疏调制信号双谱分析方法

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Modulation signal bispectrum (MSB) analysis is an effective method to obtain the fault frequency for rolling bearing, but harmonics make fault frequency dense and even frequency aliasing. Carrier frequency of bearing is generally determined by its structure and inherent characteristics and changes with the increase of the damage degree, so it is hard to be accurately found. To solve these problems, this paper proposes a sparse modulation signal bispectrum analysis method. Firstly the vibration signal is demodulated by MSB analysis and its bispectrum is obtained. After the frequency domain filtering, the carrier frequency is computed based on the characteristics of energy concentration at the carrier frequency on MSB. By shift-frequency MSB (SF-MSB), the carrier frequency is moved to the coordinate origin, the entire MSB is shifted for the same distance, and SF-MSB is obtained. At last, the bispectrum is shifted to the frequency zero point and diagonal slices are performed to obtain a sparse representation of MSB. Experimental results show that sparse MSB (S-MSB) method can not only eliminate the interference of harmonic frequency, but also make the extracted characteristic frequency of fault more obvious.
机译:调制信号双频谱(MSB)分析是获得滚动轴承故障频率的有效方法,但谐波会使故障频率密集,甚至出现频率混叠。轴承的载频通常由其结构和固有特性决定,并随着损伤程度的增加而变化,因此很难准确找到。为了解决这些问题,本文提出了一种稀疏调制信号双谱分析方法。首先通过MSB分析对振动信号进行解调,得到其双谱。经过频域滤波后,根据MSB上载频处能量集中的特性计算载频。通过频移MSB(SF-MSB),载波频率移动到坐标原点,整个MSB偏移相同的距离,从而获得SF-MSB。最后,将双频谱移至频率零点,并执行对角线切片以获得MSB的稀疏表示。实验结果表明,稀疏MSB(S-MSB)方法不仅可以消除谐波频率的干扰,而且可以使提取的故障特征频率更加明显。

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