Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters

The shunt active power filters (SAPFs) are broadly utilized to improve the power quality (PQ) issues of electric power systems. A crucial issue in implementing these filters is the accurate estimation of the grid voltage phase/frequency. Indeed, the dynamic behavior and the performance of the SAPF s...

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Main Authors: Yacine Terriche, Muhammad Umair Mutarraf, Mojtaba Mehrzadi, Abderezak Lashab, Josep M. Guerrero, Juan C. Vasquez, Djallel Kerdoun
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8765714/
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spelling doaj-b6858820ac254fee9237de7775056ab72021-04-05T17:11:41ZengIEEEIEEE Access2169-35362019-01-017967439675210.1109/ACCESS.2019.29296158765714Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power FiltersYacine Terriche0https://orcid.org/0000-0002-9829-4638Muhammad Umair Mutarraf1Mojtaba Mehrzadi2Abderezak Lashab3Josep M. Guerrero4Juan C. Vasquez5Djallel Kerdoun6Energy Technology, Aalborg University, Aalborg, DenmarkEnergy Technology, Aalborg University, Aalborg, DenmarkEnergy Technology, Aalborg University, Aalborg, DenmarkEnergy Technology, Aalborg University, Aalborg, DenmarkEnergy Technology, Aalborg University, Aalborg, DenmarkEnergy Technology, Aalborg University, Aalborg, DenmarkDepartment of Electrical Engineering, University of Frères Mentouri Constantine 1, Constantine, AlgeriaThe shunt active power filters (SAPFs) are broadly utilized to improve the power quality (PQ) issues of electric power systems. A crucial issue in implementing these filters is the accurate estimation of the grid voltage phase/frequency. Indeed, the dynamic behavior and the performance of the SAPF strongly rely on this point. To deal with this challenge, a fast yet effective open-loop synchronization (OLS) technique based on Cascaded Delayed Signal Cancellation (CDSC) is presented in this paper. The proposed technique can reject the odd-order harmonics, the DC offset of the grid voltage, and its dynamic response during transients take an only half cycle of the fundamental frequency. To adapt the proposed OLS technique to the frequency changes, an efficient frequency estimator is also presented. The effectiveness of the proposed OLS technique is demonstrated using simulation and experimental results.https://ieeexplore.ieee.org/document/8765714/Cascaded delayed signal cancellation (CDSC) operatorsopen loop synchronization (OLS) techniquephase and frequency estimatorsshunt active power filter
collection DOAJ
language English
format Article
sources DOAJ
author Yacine Terriche
Muhammad Umair Mutarraf
Mojtaba Mehrzadi
Abderezak Lashab
Josep M. Guerrero
Juan C. Vasquez
Djallel Kerdoun
spellingShingle Yacine Terriche
Muhammad Umair Mutarraf
Mojtaba Mehrzadi
Abderezak Lashab
Josep M. Guerrero
Juan C. Vasquez
Djallel Kerdoun
Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters
IEEE Access
Cascaded delayed signal cancellation (CDSC) operators
open loop synchronization (OLS) technique
phase and frequency estimators
shunt active power filter
author_facet Yacine Terriche
Muhammad Umair Mutarraf
Mojtaba Mehrzadi
Abderezak Lashab
Josep M. Guerrero
Juan C. Vasquez
Djallel Kerdoun
author_sort Yacine Terriche
title Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters
title_short Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters
title_full Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters
title_fullStr Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters
title_full_unstemmed Adaptive CDSC-Based Open-Loop Synchronization Technique for Dynamic Response Enhancement of Active Power Filters
title_sort adaptive cdsc-based open-loop synchronization technique for dynamic response enhancement of active power filters
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description The shunt active power filters (SAPFs) are broadly utilized to improve the power quality (PQ) issues of electric power systems. A crucial issue in implementing these filters is the accurate estimation of the grid voltage phase/frequency. Indeed, the dynamic behavior and the performance of the SAPF strongly rely on this point. To deal with this challenge, a fast yet effective open-loop synchronization (OLS) technique based on Cascaded Delayed Signal Cancellation (CDSC) is presented in this paper. The proposed technique can reject the odd-order harmonics, the DC offset of the grid voltage, and its dynamic response during transients take an only half cycle of the fundamental frequency. To adapt the proposed OLS technique to the frequency changes, an efficient frequency estimator is also presented. The effectiveness of the proposed OLS technique is demonstrated using simulation and experimental results.
topic Cascaded delayed signal cancellation (CDSC) operators
open loop synchronization (OLS) technique
phase and frequency estimators
shunt active power filter
url https://ieeexplore.ieee.org/document/8765714/
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AT muhammadumairmutarraf adaptivecdscbasedopenloopsynchronizationtechniquefordynamicresponseenhancementofactivepowerfilters
AT mojtabamehrzadi adaptivecdscbasedopenloopsynchronizationtechniquefordynamicresponseenhancementofactivepowerfilters
AT abderezaklashab adaptivecdscbasedopenloopsynchronizationtechniquefordynamicresponseenhancementofactivepowerfilters
AT josepmguerrero adaptivecdscbasedopenloopsynchronizationtechniquefordynamicresponseenhancementofactivepowerfilters
AT juancvasquez adaptivecdscbasedopenloopsynchronizationtechniquefordynamicresponseenhancementofactivepowerfilters
AT djallelkerdoun adaptivecdscbasedopenloopsynchronizationtechniquefordynamicresponseenhancementofactivepowerfilters
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