• CN:11-2187/TH
  • ISSN:0577-6686

›› 2003, Vol. 39 ›› Issue (8): 141-145.

• 论文 • 上一篇    下一篇

动态过程非平稳性度量及其在设备诊断工程中的应用

关惠玲;阎献国;张优云   

  1. 西安交通大学;太原重型机械学院
  • 发布日期:2003-08-15

UNSTEADINESS MEASUREMENT OF DYNAMIC PROCESS AND ITS APPLICATION TO EQUIPMENT-DIAGNOSING ENGINEERING

Guan Huiling;Yan Xianguo;Zhang Youyun   

  1. Xi’an Jiaotong University Taiyuan Heavy Machinery Institute
  • Published:2003-08-15

摘要: 以随机过程Zt构建所有两点间距离过程XS,在证明XS完全体现了Zt的一、二阶矩函数变化的基础上,证明相关积分(Correlation integral)能够反映Zt的非平稳性。以XS的概率密度函数为依据引出了相关积分算式中参考距离的取值原则。以相关积分为基础定义了设备动态过程非平稳性的度量参数:绝对非平稳度、相对非平稳度、绝对非平稳率、相对非平稳率。分别以工程实例和试验例子论证了非平稳性度量参数工程应用的有效性。简单阐述了非平稳性度量参数在信号分析与故障诊断系统中的应用。

关键词: 非平稳信号, 过程非平稳度, 过程非平稳率, 相关积分, 旋转失速

Abstract: The process Xs of interpoint distance between all pairs of points in the random process Zt is constructed. It is proved that Xs could reflect the changes of first- and second-order moment function of Zt. Also it is proved that correlation integral could reflect the unsteadiness of Zt. According to the function of probability density of Xs, the method of taking value of reference distance in correlation integral formula is proposed. Based on correlation integral, the unsteadiness-measuring parameters of equipment dynamical process are defined which are absolute degree of unsteadiness, relative degree of unsteadiness, absolute ratio of unsteadiness and relative ratio of unsteadiness. By means of the applications of these parameters to a real case of production field and a case of our experiment, it is demonstrated that the unsteadiness-measuring parameters are available in equipment-diagnosing engineering. The use of these parameters to the system of signal analysis and fault diagnosis is presented.

Key words: Correlation integral, Process unsteadiness, Ratio of process unsteadiness, Rotate stall, Unsteady signal

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