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  HomeContents of Chinese Journal of Mechanical Engineering (English Edition),2004 No.4DEVELOPMENT OF VIRTUAL INSTRU- MENT IN CHARACTERISTIC ANALYSIS OF ROTATING MACHINERY BASED ON INSTANTANEOUS FREQUENCY ESTIMATION

Yang Jiongming

 

Qin Shuren

 

Ji Zhong

College of Mechanical Engineering,
Chongqing University,
Chongqing 400030, China

 

Guo Yu

College of Mechanical and
Electronical Engineering,
Kunming Science and
Technology University,
Kunming 650093, China

 

 

DEVELOPMENT OF VIRTUAL INSTRU- MENT IN CHARACTERISTIC ANALYSIS OF ROTATING MACHINERY BASED ON INSTANTANEOUS FREQUENCY ESTIMATION*

 

Abstract: Based on the recently quick-developing time-frequency analysis (TFA) technique and virtual instrument (VI) technique, a virtual instrument in characteristic analysis of rotating machinery is researched and developed successfully. By utilizing instantaneous frequency estimation (IFE) theoretics of TFA technique, and based on IFE of peak searching on the time-frequency spectrum, order analysis (OA) functions is put forward and implemented, such as order spectrum, order spectrum matrix, order tracking, order tracking filtering, and order component extraction, etc. Unlike the home and abroad existing popular characteristic analyzers, which need key phasing devices such as shaft encoder, phase-locked loop (PLL), phase-locked multiple frequency, tachometer, etc, to implement constant angle sampling directly or indirectly, whereas this instrument only uses the vibration signal of rotating machinery to carry out OA. This instrument makes up the shortage of these traditional instruments in analyzing the non-stationary signal of run-up and run-down process of rotating machinery. Therefore, it is a great breakthrough for the existing order analyzers.

Key words: Rotating machinery  Time-frequency analysis  Instantaneous frequency  Order analysis  Virtual instrument

 


* This project is supported by National Natural Science Foundation of China (No.50135050). Received December 19, 2003; received in revised form May 27, 2004; accepted July 13, 2004

 

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