OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM

The increasing use of power electronic devices has resulted in harmonics that may cause in power systems overheating of equipment, poor power factor and voltage distortion. Shunt active power filter (SAPF) provides the most useful means for harmonics mitigation in power systems. In a certain number...

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Main Authors: Betrand N. ATANGA, Francis B. EFFAH, Daniel KWEGYIR, Philip Y. OKYERE
Format: Article
Language:English
Published: Technical University of Cluj-Napoca 2022-12-01
Series:Carpathian Journal of Electrical Engineering
Subjects:
Online Access:http://cee.cunbm.utcluj.ro/wp-content/uploads/CJEE20225.pdf
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author Betrand N. ATANGA
Francis B. EFFAH
Daniel KWEGYIR
Philip Y. OKYERE
author_facet Betrand N. ATANGA
Francis B. EFFAH
Daniel KWEGYIR
Philip Y. OKYERE
author_sort Betrand N. ATANGA
collection DOAJ
description The increasing use of power electronic devices has resulted in harmonics that may cause in power systems overheating of equipment, poor power factor and voltage distortion. Shunt active power filter (SAPF) provides the most useful means for harmonics mitigation in power systems. In a certain number of SAPFs, the dc link capacitor voltage is regulated by means of a PI controller. This paper proposes a variant of a population based Jumping Spider Algorithm for optimal tuning of the PI controller to enhance the performance of the active filter. The SAPF considered in this paper uses the p-q theory to extract its reference current and the hysteresis current control to produce the triggering signals for the controlled switching devices of its inverter. The overall SAPF is developed and validated using MATLAB/Simulink tool under two different nonlinear loading conditions. The results obtained by simulation show that the SAPF with the proposed PI controller effectively controls the dc-link capacitor voltage and mitigates current harmonics.
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spelling doaj.art-bd0aa007ba2340ac9d9a050c7a9d2f602023-06-12T06:34:16ZengTechnical University of Cluj-NapocaCarpathian Journal of Electrical Engineering1843-75832022-12-011617591OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHMBetrand N. ATANGA0Francis B. EFFAH1Daniel KWEGYIR2Philip Y. OKYERE3Kwame Nkrumah University of Science and Technology, Kumasi, Ghana Kwame Nkrumah University of Science and Technology, Kumasi, Ghana Kwame Nkrumah University of Science and Technology, Kumasi, Ghana Kwame Nkrumah University of Science and Technology, Kumasi, Ghana The increasing use of power electronic devices has resulted in harmonics that may cause in power systems overheating of equipment, poor power factor and voltage distortion. Shunt active power filter (SAPF) provides the most useful means for harmonics mitigation in power systems. In a certain number of SAPFs, the dc link capacitor voltage is regulated by means of a PI controller. This paper proposes a variant of a population based Jumping Spider Algorithm for optimal tuning of the PI controller to enhance the performance of the active filter. The SAPF considered in this paper uses the p-q theory to extract its reference current and the hysteresis current control to produce the triggering signals for the controlled switching devices of its inverter. The overall SAPF is developed and validated using MATLAB/Simulink tool under two different nonlinear loading conditions. The results obtained by simulation show that the SAPF with the proposed PI controller effectively controls the dc-link capacitor voltage and mitigates current harmonics. http://cee.cunbm.utcluj.ro/wp-content/uploads/CJEE20225.pdfshunt active power filterpi-controllerharmonics mitigationp-q theory
spellingShingle Betrand N. ATANGA
Francis B. EFFAH
Daniel KWEGYIR
Philip Y. OKYERE
OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM
Carpathian Journal of Electrical Engineering
shunt active power filter
pi-controller
harmonics mitigation
p-q theory
title OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM
title_full OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM
title_fullStr OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM
title_full_unstemmed OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM
title_short OPTIMAL TUNING OF PI-CONTROLLER OF SHUNT ACTIVE POWER FILTER FOR HARMONICS MITIGATION USING ENHANCED JUMPING SPIDER ALGORITHM
title_sort optimal tuning of pi controller of shunt active power filter for harmonics mitigation using enhanced jumping spider algorithm
topic shunt active power filter
pi-controller
harmonics mitigation
p-q theory
url http://cee.cunbm.utcluj.ro/wp-content/uploads/CJEE20225.pdf
work_keys_str_mv AT betrandnatanga optimaltuningofpicontrollerofshuntactivepowerfilterforharmonicsmitigationusingenhancedjumpingspideralgorithm
AT francisbeffah optimaltuningofpicontrollerofshuntactivepowerfilterforharmonicsmitigationusingenhancedjumpingspideralgorithm
AT danielkwegyir optimaltuningofpicontrollerofshuntactivepowerfilterforharmonicsmitigationusingenhancedjumpingspideralgorithm
AT philipyokyere optimaltuningofpicontrollerofshuntactivepowerfilterforharmonicsmitigationusingenhancedjumpingspideralgorithm