Title :
Wide Frequency Range Adaptive Phasor and Frequency PMU Algorithms
Author :
Kamwa, Innocent ; Samantaray, S.R. ; Joos, Geza
Author_Institution :
Power Syst. & Math., Hydro-Quebec/IREQ, Varennes, QC, Canada
Abstract :
The paper deals with developing and testing frequency-adaptive PMU algorithms with wider linearity range than specified in IEEE Std C37.118-1. This goal is achieved by means of three different concepts encompassing robust state-of-the-art design approaches: 1) FIR bandpass filtering, 2) extended Kalman filtering (EKF), and 3) discrete Fourier transform (DFT) demodulation with FIR low-pass smoothing. While FIR-based PMUs are linear phase with no overshoot in either phase or amplitude step responses, the adaptive EKF PMU is more computer-intensive but allows for a reduced group delay and better out-of-band interference rejection at the cost of a phase step response with overshoot. Frequency measurement performances of the various PMUs are assessed in detail. It turned out that FIR PMUs are best for meeting Std C37-118-1 metrics but they are outperformed by EKF under changing harmonics. Test results on three recent commercial PMU models further confirm that PMU algorithms meeting standard C37-118-1 can behave quite differently under dynamic conditions.
Keywords :
FIR filters; Kalman filters; band-pass filters; discrete Fourier transforms; filtering theory; nonlinear filters; phasor measurement; FIR bandpass filtering; FIR low-pass smoothing; IEEE Std C37.118-1; discrete Fourier transform demodulation; extended Kalman filtering; frequency-adaptive PMU algorithm; wide frequency range adaptive phasor; Algorithm design and analysis; Discrete Fourier transforms; Finite impulse response filters; Frequency measurement; Harmonic analysis; Kalman filters; Phasor measurement units; Bandpass filtering; Kalman filtering; discrete fourier transform (DFT); frequency error (FE); phasor measurement unit (PMU); synchrophasor; total vector error (TVE); wide-area PSS (WAPSS); wide-area measurement system (WAMS); wide-area protection and control (WAPC);
Journal_Title :
Smart Grid, IEEE Transactions on
DOI :
10.1109/TSG.2013.2264536