info:eu-repo/semantics/article
A Self-Adaptive Contractive Algorithm for Enhanced Dynamic Phasor Estimation
Fecha
2020-05Registro en:
Messina, Francisco Javier; Marchi, Pablo Gabriel; Rey Vega, Leonardo Javier; Galarza, Cecilia Gabriela; A Self-Adaptive Contractive Algorithm for Enhanced Dynamic Phasor Estimation; Institute of Electrical and Electronics Engineers; IEEE Transactions on Smart Grid; 11; 3; 5-2020; 2367-2380
1949-3053
1949-3061
CONICET Digital
CONICET
Autor
Messina, Francisco Javier
Marchi, Pablo Gabriel
Rey Vega, Leonardo Javier
Galarza, Cecilia Gabriela
Resumen
In this paper, a self-adaptive contractive (SAC) algorithm is proposed for enhanced dynamic phasor estimation in the diverse operating conditions of modern power systems. At a high-level, the method is composed of three stages: parameter shifting, filtering and parameter unshifting. The goal of the first stage is to transform the input signal phasor so that it is approximately mapped to nominal conditions. The second stage provides estimates of the phasor, frequency, rate of change of frequency (ROCOF), damping and rate of change of damping (ROCOD) of the parameter shifted phasor by using a differentiator filter bank (DFB). The final stage recovers the original signal phasor parameters while rejecting misleading estimates. The most important features of the algorithm are that it offers convergence guarantees in a set of desired conditions, and also great harmonic rejection. Numerical examples, including the IEEE C37.118.1 standard tests with realistic noise levels, as well as fault conditions, validate the proposed algorithm.