LAPSE:2023.13258v1
Published Article

LAPSE:2023.13258v1
Single-Phase Universal Power Compensator with an Equal VAR Sharing Approach
March 1, 2023
Abstract
In this manuscript, we propose a single-phase UPC (universal power compensator) system to extensively tackle power quality issues (voltage and current) with an equal VAR (volt-ampere reactive) sharing approach between the series and shunt APF (active power filter) of a UPC system. The equal VAR sharing feature facilitates the series and shunt APF inverters to be of an equal rating. An SRF (synchronous reference frame)-based direct PA (power angle) calculation technique is implemented to realize equal VAR sharing between the APFs of the UPC. This PA estimation utilizes d and q axis current parameters derived for the reference signal generation of the shunt APF. An SRF-based method is highly useful for power estimations in distorted supply voltage conditions compared with other conventional methods, i.e., the PQ method. It comprises a reduced complexity and estimations with an easiness to retain two APF inverters of equal rating. A rigorous simulation analysis is performed with MATLAB/SIMULINK and a real-time digital simulator (OPAL-RT) for addressing different power quality-disturbing elements such as current harmonics, voltage harmonics, voltage sag/swell and load VAR demand with the proposed method.
In this manuscript, we propose a single-phase UPC (universal power compensator) system to extensively tackle power quality issues (voltage and current) with an equal VAR (volt-ampere reactive) sharing approach between the series and shunt APF (active power filter) of a UPC system. The equal VAR sharing feature facilitates the series and shunt APF inverters to be of an equal rating. An SRF (synchronous reference frame)-based direct PA (power angle) calculation technique is implemented to realize equal VAR sharing between the APFs of the UPC. This PA estimation utilizes d and q axis current parameters derived for the reference signal generation of the shunt APF. An SRF-based method is highly useful for power estimations in distorted supply voltage conditions compared with other conventional methods, i.e., the PQ method. It comprises a reduced complexity and estimations with an easiness to retain two APF inverters of equal rating. A rigorous simulation analysis is performed with MATLAB/SIMULINK and a real-time digital simulator (OPAL-RT) for addressing different power quality-disturbing elements such as current harmonics, voltage harmonics, voltage sag/swell and load VAR demand with the proposed method.
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Keywords
APF, power quality, SRF, UPC, VAR
Subject
Suggested Citation
Patnaik N, Pandey R, Satish R, Surakasi B, Abdelaziz AY, El-Shahat A. Single-Phase Universal Power Compensator with an Equal VAR Sharing Approach. (2023). LAPSE:2023.13258v1
Author Affiliations
Patnaik N: Department of Electrical and Electronics Engineering, Chaitanya Bharathi Institute of Technology, Hyderabad 500075, India [ORCID]
Pandey R: Department of Electrical and Electronics Engineering, MVGR College of Engineering, Vizianagaram 530048, India
Satish R: Department of Electrical and Electronics Engineering, Anil Neerukonda Institute of Technology and Sciences, Visakhapatnam 531162, India
Surakasi B: Department of Electrical and Electronics Engineering, Anil Neerukonda Institute of Technology and Sciences, Visakhapatnam 531162, India
Abdelaziz AY: Faculty of Engineering and Technology, Future University in Egypt, Cairo 11835, Egypt [ORCID]
El-Shahat A: Energy Technology Program, School of Engineering, Purdue University, West Lafayette, IN 47906, USA [ORCID]
Pandey R: Department of Electrical and Electronics Engineering, MVGR College of Engineering, Vizianagaram 530048, India
Satish R: Department of Electrical and Electronics Engineering, Anil Neerukonda Institute of Technology and Sciences, Visakhapatnam 531162, India
Surakasi B: Department of Electrical and Electronics Engineering, Anil Neerukonda Institute of Technology and Sciences, Visakhapatnam 531162, India
Abdelaziz AY: Faculty of Engineering and Technology, Future University in Egypt, Cairo 11835, Egypt [ORCID]
El-Shahat A: Energy Technology Program, School of Engineering, Purdue University, West Lafayette, IN 47906, USA [ORCID]
Journal Name
Energies
Volume
15
Issue
10
First Page
3769
Year
2022
Publication Date
2022-05-20
ISSN
1996-1073
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PII: en15103769, Publication Type: Journal Article
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LAPSE:2023.13258v1
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https://doi.org/10.3390/en15103769
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Mar 1, 2023
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