DocumentCode :
2740226
Title :
Robust Incipient Fault Diagnosis Methods for Enhanced Aircraft Engine Rotor Prognostics
Author :
Wang, Zhongsheng ; Jiang, Hongkai
Author_Institution :
Northwestern Polytech. Univ., Xian
fYear :
2007
fDate :
5-7 Sept. 2007
Firstpage :
455
Lastpage :
455
Abstract :
Signal de-noising and diagnosis of the weak signature are crucial to aircraft engine prognostics in which case features are often very weak and masked by noise. Robust methods are needed to provide more evident information for aircraft engine incipient fault diagnosis and prognostics. This paper develops enhanced and robust prognostic methods for aircraft engine including wavelet based method for weak signature enhanced for adaptive de-noising and correlation dimension based for incipient fault diagnosis. Firstly, the adaptive wavelet de-noising method is used to reduce noise of the vibration signal. Then, correlation dimension of the vibration signal after de-noising is computed, and the correlation dimension is used as the character parameter for identifying the fault deterioration grade. Experiment on the rotor of aircraft engine is carried out. The experimental results demonstrate that: (1) the different rotor faults show different kinematics mechanisms; (2) the singular signal of incipient fault on aircraft engine rotor can be effectively extracted by adaptive de-noising; (3) the correlation dimensions of different faults can be easily distinguished and used as characteristic of nonlinear faults of the rotor.
Keywords :
aerospace engineering; aerospace engines; fault diagnosis; mechanical engineering computing; rotors; signal denoising; vibration measurement; adaptive denoising; aircraft engine incipient fault diagnosis; aircraft engine prognostics; correlation dimension; enhanced aircraft engine rotor prognostics; fault deterioration grade; kinematics mechanisms; nonlinear rotor faults; robust incipient fault diagnosis; signal denoising; signal diagnosis; singular signal; vibration signal; wavelet based method; Aircraft propulsion; Condition monitoring; Degradation; Engines; Fault diagnosis; Noise level; Noise reduction; Robustness; Signal denoising; Wavelet coefficients;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Computing, Information and Control, 2007. ICICIC '07. Second International Conference on
Conference_Location :
Kumamoto
Print_ISBN :
0-7695-2882-1
Type :
conf
DOI :
10.1109/ICICIC.2007.497
Filename :
4428097
Link To Document :
بازگشت