Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids

Nowadays supra-harmonic distortion studies are gaining attention day by day in power quality research area. When handling communication systems especially Power Line Carrier (PLC) systems in frequency range 2- 150 kHz, they are suitable for causing electromagnetic interference (EMI) to other systems...

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Main Authors: Turgay Yalcin, Muammer Ozdemir, Pawel Kostyla, Zbigniew Leonowicz
Format: Article
Language:English
Published: EEEIC International Publishing 2017-10-01
Series:Transactions on Environment and Electrical Engineering
Subjects:
Online Access:https://teee.eu/index.php/TEEE/article/view/114
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author Turgay Yalcin
Muammer Ozdemir
Pawel Kostyla
Zbigniew Leonowicz
author_facet Turgay Yalcin
Muammer Ozdemir
Pawel Kostyla
Zbigniew Leonowicz
author_sort Turgay Yalcin
collection DOAJ
description Nowadays supra-harmonic distortion studies are gaining attention day by day in power quality research area. When handling communication systems especially Power Line Carrier (PLC) systems in frequency range 2- 150 kHz, they are suitable for causing electromagnetic interference (EMI) to other systems. This study shows results of analysis employing advanced method called ensemble empirical mode decomposition (EEMD) to describe supra-harmonic distortion. Unlike the traditional method (short time fourier transform- STFT), EEMD gives extensive representation for supra-harmonic components
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publishDate 2017-10-01
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spelling doaj.art-27422c655a634637ae6d464a12a76d352022-12-22T01:01:30ZengEEEIC International PublishingTransactions on Environment and Electrical Engineering2450-57302017-10-0122808510.22149/teee.v2i2.11463Investigation of Supra-Harmonics through Signal Processing Methods in Smart GridsTurgay Yalcin0Muammer Ozdemir1Pawel Kostyla2Zbigniew Leonowicz3Ondokuz Mayis University, Electrical&Electronic Engineering Faculty, SamsunOndokuz Mayis University, Electrical&Electronic Engineering Faculty, SamsunFaculty of Electrical Engineering, Wroclaw University of Science and TechnologyWroclaw University of Science and TechnologyNowadays supra-harmonic distortion studies are gaining attention day by day in power quality research area. When handling communication systems especially Power Line Carrier (PLC) systems in frequency range 2- 150 kHz, they are suitable for causing electromagnetic interference (EMI) to other systems. This study shows results of analysis employing advanced method called ensemble empirical mode decomposition (EEMD) to describe supra-harmonic distortion. Unlike the traditional method (short time fourier transform- STFT), EEMD gives extensive representation for supra-harmonic componentshttps://teee.eu/index.php/TEEE/article/view/114ensemble empirical mode decompositionpower qualityshort time fourier analysissupra-harmonics
spellingShingle Turgay Yalcin
Muammer Ozdemir
Pawel Kostyla
Zbigniew Leonowicz
Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids
Transactions on Environment and Electrical Engineering
ensemble empirical mode decomposition
power quality
short time fourier analysis
supra-harmonics
title Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids
title_full Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids
title_fullStr Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids
title_full_unstemmed Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids
title_short Investigation of Supra-Harmonics through Signal Processing Methods in Smart Grids
title_sort investigation of supra harmonics through signal processing methods in smart grids
topic ensemble empirical mode decomposition
power quality
short time fourier analysis
supra-harmonics
url https://teee.eu/index.php/TEEE/article/view/114
work_keys_str_mv AT turgayyalcin investigationofsupraharmonicsthroughsignalprocessingmethodsinsmartgrids
AT muammerozdemir investigationofsupraharmonicsthroughsignalprocessingmethodsinsmartgrids
AT pawelkostyla investigationofsupraharmonicsthroughsignalprocessingmethodsinsmartgrids
AT zbigniewleonowicz investigationofsupraharmonicsthroughsignalprocessingmethodsinsmartgrids