DocumentCode
47524
Title
Performance of Synchrophasor Estimators in Transient Conditions: A Comparative Analysis
Author
Barchi, G. ; Macii, D. ; Belega, Daniel ; Petri, Dario
Author_Institution
Dept. of Inf. Eng. & Comput. Sci., Univ. of Trento, Trento, Italy
Volume
62
Issue
9
fYear
2013
fDate
Sept. 2013
Firstpage
2410
Lastpage
2418
Abstract
Transient amplitude or phase changes in current or voltage waveforms may seriously affect synchrophasor estimator´s accuracy and responsiveness. The IEEE Standard C37.118.1-2011 specifies test conditions as well as accuracy and response delay limits for different types of disturbances. In this paper, the performances of three state-of-the-art techniques based on phasor Taylor´s series expansion specifically conceived to track phasors in dynamic conditions are analyzed and compared with the one-cycle discrete Fourier transform estimator under the effect of amplitude step changes, phase step changes, and linear frequency variations. Several simulation results show that the total vector error (TVE) tends to increase linearly with the step size. However, the peak TVE increments for a given step size are quite similar for all the considered techniques and are dominated by amplitude or phase errors, depending on whether the step affects the waveform amplitude or its phase, respectively. In this paper, the response times of the considered estimators for two different TVE thresholds are also analyzed and compared as a function of the step size, to assess their compliance to the requirements of the standard. Further simulation results show that in the case of linear frequency variations, responsiveness is not an issue and the TVE values of all estimators lie within the same worst case boundaries as those related to the case of static off-nominal frequency offsets.
Keywords
IEEE standards; discrete Fourier transforms; phasor measurement; IEEE standard C37.118.1-2011; Taylor series expansion; current waveforms; discrete Fourier transform; linear frequency variations; synchrophasor estimators; total vector error; track phasors; transient amplitude; transient conditions; voltage waveforms; waveform amplitude; Accuracy; Discrete Fourier transforms; Frequency estimation; Phasor measurement units; Simulation; Time factors; Transient analysis; Fourier transform; power system monitoring; signal processing; synchrophasor estimation; uncertainty;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2013.2270926
Filename
6562796
Link To Document