Title :
Vibration Fault analysis for rotor systems by using Hilbert spectrum
Author :
Yang, Yong ; Zhang, Shuai ; Han, Qingkai ; Qu, Yanhuai
Author_Institution :
Sch. of Inf. & Electr. Eng., Shenyang Agric. Univ., Shenyang, China
Abstract :
The paper presents a relative novel time-frequency analysis method which applies in the vibration Fault analysis of rotor systems through Hilbert spectral analysis (HSA), the part of the Hilbert-Huang transform. Using this method we analyze the vibration fault characteristics of the rotor system with rub-impact by compared with non-rubbing rotor system both in experiment and simulation. Firstly, a single-span-two-disc test rig of rotor system with rub-impact at fixed limiter is established, and corresponding simulation model is built by finite element method (FEM). Then, system experimental and simulation signals at non-rubbing and rubbing condition are obtained based on the experiment and the FE model simulation, moreover which are analyzed by using HSA along with shaft center orbit method. The results show that the proposed method is effective in the vibration Fault analysis of rotor systems. Some conclusions are achieved which will be useful in the detection of rub-impact fault of rotor systems.
Keywords :
Hilbert transforms; abrasion; dynamic testing; fault diagnosis; finite element analysis; rotors; time-frequency analysis; vibrations; Hilbert spectral analysis; Hilbert spectrum; Hilbert-Huang transform; finite element method; rotor system; rub impact; shaft center orbit method; single span two disc test; time frequency analysis; vibration fault analysis; Analytical models; Fault detection; Fault diagnosis; Fourier transforms; Information analysis; Signal analysis; Spectral analysis; Time frequency analysis; Vibrations; Wavelet transforms; Hilbert spectral analysis (HSA); fault characteristics analyses; finite element method (FEM); rotor system;
Conference_Titel :
Mechanic Automation and Control Engineering (MACE), 2010 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-7737-1
DOI :
10.1109/MACE.2010.5535813