DocumentCode :
1049202
Title :
Identification of instantaneous attributes of torsional shaft signals using the Hilbert transform
Author :
Andrade, Manuel A. ; Messina, A.R. ; Rivera, Carlos A. ; Olguin, Daniel
Author_Institution :
Center for Res. & Adv. Studies, Nat. Polytech. Inst., Guadalajara, Mexico
Volume :
19
Issue :
3
fYear :
2004
Firstpage :
1422
Lastpage :
1429
Abstract :
A systematic analytical procedure based on the concept of the analytic signal (AS) of Gabor is used to determine the time-varying attributes of torsional oscillations, namely the instantaneous amplitude and the instantaneous frequency. Methods for implementing the AS using the numeric Hilbert transform are given and criteria for characterizing nonlinear effects are discussed. The proposed methodology is demonstrated on the IEEE First Benchmark Model (FBM) for subsynchronous resonance studies. The AS analysis is performed on output data files generated by nonlinear simulations using the EMTP, but the method is general and is applicable to any nonlinear, nonstationary signal. Numerical results include the determination of the instantaneous frequency of torsional oscillation signals following large perturbations. Comparison of numerical results obtained by the proposed method with linear analysis techniques is provided.
Keywords :
EMTP; Hilbert transforms; oscillations; power system dynamic stability; signal processing; subsynchronous resonance; EMTP; Gabor analytic signals; Hilbert transform; first benchmark models; nonlinear effects; power system dynamic stability; signal processing; subsynchronous resonance; subsynchronous resonance studies; time-varying attributes; torsional oscillations; torsional shaft signals; Analytical models; EMTP; Frequency; Performance analysis; Resonance; Shafts; Signal analysis; Signal generators; Signal processing; Time varying systems; Power system dynamic stability; signal processing; subsynchronous resonance;
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2004.829664
Filename :
1318678
Link To Document :
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