Title :
Application of Linear-Phase Filters in Induction Motor Speed Detection
Author :
Zhi Gao ; Turner, Larry ; Colby, Roy S.
Author_Institution :
Strategy & Innovation, Schneider Electr., Knightdale, NC, USA
Abstract :
In rotor-slot-harmonic-based speed detection schemes, a grid-connected induction motor´s rotational speed isresolved from the phase of a rotor slot harmonic signal for condition monitoring purposes. In such schemes,frequency-selective digital filters are often applied to attenuate interferences in sampled motor currents before rotorslot harmonic signals are extracted. This paper demonstrates that the use of linear-phase filters, which is a family ofdigital filters with linear phase responses, helps preserve the rotor slot harmonic signal´s phase during the filteringoperation. This paper also shows that, for grid-connected induction motors with periodically time-varying loads, therotor slot harmonic signal´s frequency is modulated by periodic speed oscillations and hence contains multiple sidebandsin the frequency spectrum. Experimental results further show that linear-phase filters allow for a more accuratedetection of the induction motor speed than filters with nonlinear phase responses.
Keywords :
condition monitoring; digital filters; harmonic analysis; induction motors; interference suppression; linear phase filters; rotors; condition monitoring; frequency modulation; frequency spectrum; frequency-selective digital filter; grid-connected induction motor rotational speed; induction motor speed detection; interference attenuation; linear phase response; linear-phase filter; multiple sideband; periodic speed oscillation; periodically time-varying load; rotor slot harmonic signal phase; rotor-slot-harmonic-based speed detection scheme; sampled motor current; Digital filters; Frequency modulation; Harmonic analysis; Induction motors; Power harmonic filters; Rotors; Vectors; Condition monitoring; digital filters; frequency modulation(FM); group delay; induction motor; linearphase; rotor slot harmonics; speeddetection;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2014.2346710