Title :
Fault identification in rotor/magnetic bearing systems using discrete time wavelet coefficients
Author :
Cade, Iain S. ; Keogh, Patrick S. ; Sahinkaya, M. Necip
Author_Institution :
Dept. of Mech. Eng., Univ. of Bath, UK
Abstract :
A method of online fault identification in rotor/magnetic bearing systems is presented using wavelet analysis. A filter bank approach is taken to identify the discrete time wavelet coefficients of the rotor displacement signals. From artifacts present in the discrete time wavelet series associated with specific faults, it is shown that it is possible to identify both the onset time and the fault type. This method is demonstrated for simulations of a flexible rotor/active magnetic bearing assembly during auxiliary bearing contact and direct synchronous forcing for a range covering flexible critical speeds. Experimental validation was performed on a flexible rotor/active magnetic bearing facility undergoing sudden rotor unbalance, resulting in rotor orbits with and without auxiliary bearing contact. Artifacts associated with both the sudden mass loss and the rotor/bearing contact are identified.
Keywords :
assembling; discrete time filters; discrete wavelet transforms; fault location; magnetic bearings; mechanical contact; rotors; time series; active magnetic bearing assembly; auxiliary bearing contact; direct synchronous forcing; discrete time wavelet coefficients; filter bank approach; flexible rotor; online fault identification; rotor displacement signals; rotor-bearing contact; rotor-magnetic bearing systems; Assembly; Discrete wavelet transforms; Fault diagnosis; Filter bank; Magnetic analysis; Magnetic levitation; Orbits; Signal processing; Wavelet analysis; Wavelet coefficients; Fault identification; rotor/magnetic bearing systems; wavelet anaylsis;
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
DOI :
10.1109/TMECH.2005.859834