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  4. Statistical Model of Measurement Noise in Real-World PMU-based Acquisitions
 
conference paper

Statistical Model of Measurement Noise in Real-World PMU-based Acquisitions

Frigo, G.
•
Derviskadic, A.
•
Bach, A.
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May 21, 2019
2019 International Conference on Smart Grid Synchronized Measurements and Analytics (SGSMA)
2019 International Conference on Smart Grid Synchronized Measurements and Analytics (SGSMA)

In this paper, we present a processing technique to determine the statistical distribution of additive measurement noise in real-world acquisitions, with specific reference to Phasor Measurement Unit (PMU) applications in Active Distribution Networks (ADNs). The proposed approach identifies the power signal fundamental component, as well as harmonic and interharmonic interferences, and models the measurement noise as a Gaussian random variable. First, we describe the algorithm main stages and the criteria for the most suitable parameter setting. Then, we carry out a numerical validation inspired by IEEE Std. C37.118.1 test conditions. Finally, we validate the proposed approach on real-world measurements acquired by a PMU in the distribution network of EPFL campus.

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Type
conference paper
DOI
10.1109/SGSMA.2019.8784581
Web of Science ID

WOS:000494746200021

Author(s)
Frigo, G.
Derviskadic, A.
Bach, A.
Paolone, Mario  
Date Issued

2019-05-21

Publisher

IEEE

Publisher place

New York

Published in
2019 International Conference on Smart Grid Synchronized Measurements and Analytics (SGSMA)
ISBN of the book

978-1-7281-1607-5

978-1-7281-1608-2

Start page

1

End page

8

Subjects

Noise measurement

•

Statistical analysis

•

TayIor-Fourier Transform

•

Phasor Measurement Unit (PMU)

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
DESL  
Event nameEvent placeEvent date
2019 International Conference on Smart Grid Synchronized Measurements and Analytics (SGSMA)

College Station, Texas, USA

May 21-23, 2019

Available on Infoscience
August 6, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/159561
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