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作 者:蔡艳平[1] 李艾华[1] 石林锁[1] 白向峰[1] 沈金伟[1]
出 处:《振动与冲击》2011年第2期167-172,191,共7页Journal of Vibration and Shock
基 金:博士后科学基金项目(20070411116);学院创新性基础研究基金项目(XY2009JJB33)
摘 要:针对滚动轴承故障振动信号的调制特征和传统包络分析法的缺陷,提出一种基于经验模式分解(Empirical Mode Decomposition,简称EMD)和谱峭度(Spectrum Kurtosis,简称SK)的改进包络谱滚动轴承故障诊断方法。该方法首先对滚动轴承故障振动信号进行经验模式分解,将其分解为多个固有模式函数(Intrinsic Mode Function,简称IMF)之和,然后对各IMF分量傅里叶变换后取其绝对值,并计算其谱绝对值平方包络,在此基础上再计算不同频带IMF分量谱平方包络的峭度,最后利用谱峭度的滤波器作用,选取由轴承缺陷所引起的共振频率所在频带的IMF分量,自动构建最佳包络来进行故障诊断。将该方法应用到滚动轴承内圈缺陷的仿真故障数据和实际数据中,分析结果表明了该方法的有效性。According to modulation characteristics of roller bearing fault vibration signals and limitation of traditional envelope analysis,a roller bearing fault diagnosis method using improved envelope analysis based on empirical mode decomposition(EMD) and spectrum kurtosis(SK) was proposed here.Firstly,roller bearing fault vibration signals were decomposed into a finite number of intrinsic mode functions(IMFs).Secondly,FFT transformation was used to make each IMF into a spectral signal and calculate their absolute values,then spectrum kurtosis values were calculated using each IMF spectral absolute value square envelope.Finally,using the filtering function of the spectrum kurtosis,the best frequency band for demodulation was automatically chosen with the criterion of IMFs spectrum kurtosis.The proposed method was applied to simulated signals and actual signals,the analysis results demonstrated the effectiveness of the proposed method.
关 键 词:经验模式分解 谱峭度 包络谱 滚动轴承 故障诊断
分 类 号:TP206.3[自动化与计算机技术—检测技术与自动化装置] TH806[自动化与计算机技术—控制科学与工程]
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