DocumentCode :
2919183
Title :
Selecting time-frequency representations for detecting rotor faults in BLDC motors operating under rapidly varying operating conditions
Author :
Rajagopalan, Satish ; Restrepo, José A. ; Aller, José M. ; Habetler, Thomas G. ; Harley, Ronald G.
Author_Institution :
Georgia Inst. of Technol., Atlanta, GA, USA
fYear :
2005
fDate :
6-10 Nov. 2005
Abstract :
Electric motors work continuously under operating conditions that rapidly vary with time. Motor diagnostics in a non-stationary environment is challenging due to the need for sophisticated signal processing techniques. In this paper, the use of quadratic TFRs is presented as a solution for the diagnostics of rotor faults in brushless DC (BLDC) motors operating under constantly changing load and speed conditions. Four time-frequency representations are considered in this paper-short-time Fourier transform (STFT), Wigner-Ville distribution (WVD), Choi-Williams distribution (CWD), and the Zhao-Atlas marks distribution (ZAM). The drawbacks of these distributions and methods to overcome them are also presented. The TFRs are implemented in real-time and their load computations are compared in order to study their suitability for implementation in a commercial system.
Keywords :
Fourier transforms; Wigner distribution; brushless DC motors; fault location; rotors; time-frequency analysis; BLDC motor; Choi-Williams distribution; Wigner-Ville distribution; Zhao-Atlas marks distribution; brushless DC motor; rotor fault detection; short-time Fourier transform; signal processing technique; time-frequency representation; Brushless DC motors; Brushless motors; DC motors; Electric motors; Electrical fault detection; Fault detection; Fourier transforms; Rotors; Signal processing; Time frequency analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, 2005. IECON 2005. 31st Annual Conference of IEEE
Print_ISBN :
0-7803-9252-3
Type :
conf
DOI :
10.1109/IECON.2005.1569314
Filename :
1569314
Link To Document :
بازگشت