A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system

Abstract In this paper, a novel active current co‐efficient extraction (ACCE)‐based control method is presented for a three‐phase grid‐interfaced voltage source inverter (VSI). Since the VSI performance largely depends on the reference current generation method, it is of significance to identify the...

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Main Authors: Subham Kumar Jalan, B. Chitti Babu, Nirav Patel, Ajay Kumar, Nitin Gupta
Format: Article
Language:English
Published: Wiley 2021-09-01
Series:IET Power Electronics
Online Access:https://doi.org/10.1049/pel2.12108
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spelling doaj-5aebf46454d247a49d5322264ec5f5d02021-09-06T08:28:01ZengWileyIET Power Electronics1755-45351755-45432021-09-0114122099211410.1049/pel2.12108A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic systemSubham Kumar Jalan0B. Chitti Babu1Nirav Patel2Ajay Kumar3Nitin Gupta4PhotoVoltaic (PV) Research Lab Indian Institute of Information Technology, Design and Manufacturing Kancheepuram Chennai 600127 IndiaPhotoVoltaic (PV) Research Lab Indian Institute of Information Technology, Design and Manufacturing Kancheepuram Chennai 600127 IndiaPower Conditioning Lab Electrical Engineering Department Malaviya National Institute of Technology Jaipur IndiaPower Conditioning Lab Electrical Engineering Department Malaviya National Institute of Technology Jaipur IndiaPower Conditioning Lab Electrical Engineering Department Malaviya National Institute of Technology Jaipur IndiaAbstract In this paper, a novel active current co‐efficient extraction (ACCE)‐based control method is presented for a three‐phase grid‐interfaced voltage source inverter (VSI). Since the VSI performance largely depends on the reference current generation method, it is of significance to identify the active current co‐efficient of the load current contaminated with harmonics, as it is a key governing factor that decides the shape of the compensating current. The proposed ACCE structure functions with minimal mathematical operators like product, sum, and integrators and thereby identifies the fundamental current with computational effectiveness. Besides, in comparison to existing prevalent state‐of‐the‐art methods, the proposed ACCE structure is devoid of any low‐pass filter and zero‐crossing detector, and hence serves the following two distinctive purposes: (i) Ensures minimum steady‐state oscillations and (ii) exhibits improved dynamic performance under disturbances in the grid and load. The proposed structure effectively confronts the various power quality challenges while injecting the active power into the utility grid. Further, the incremental‐conductance‐based maximum power point tracking algorithm is equipped to extract the maximum possible power from the photovoltaic array. Finally, the effectiveness of the proposed ACCE structure has been investigated through MATLAB/Simulink software studies followed by dSPACE‐1104‐based experimental setup.https://doi.org/10.1049/pel2.12108
collection DOAJ
language English
format Article
sources DOAJ
author Subham Kumar Jalan
B. Chitti Babu
Nirav Patel
Ajay Kumar
Nitin Gupta
spellingShingle Subham Kumar Jalan
B. Chitti Babu
Nirav Patel
Ajay Kumar
Nitin Gupta
A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
IET Power Electronics
author_facet Subham Kumar Jalan
B. Chitti Babu
Nirav Patel
Ajay Kumar
Nitin Gupta
author_sort Subham Kumar Jalan
title A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
title_short A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
title_full A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
title_fullStr A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
title_full_unstemmed A novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
title_sort novel active current co‐efficient extraction‐based control for grid‐tied solar photovoltaic system
publisher Wiley
series IET Power Electronics
issn 1755-4535
1755-4543
publishDate 2021-09-01
description Abstract In this paper, a novel active current co‐efficient extraction (ACCE)‐based control method is presented for a three‐phase grid‐interfaced voltage source inverter (VSI). Since the VSI performance largely depends on the reference current generation method, it is of significance to identify the active current co‐efficient of the load current contaminated with harmonics, as it is a key governing factor that decides the shape of the compensating current. The proposed ACCE structure functions with minimal mathematical operators like product, sum, and integrators and thereby identifies the fundamental current with computational effectiveness. Besides, in comparison to existing prevalent state‐of‐the‐art methods, the proposed ACCE structure is devoid of any low‐pass filter and zero‐crossing detector, and hence serves the following two distinctive purposes: (i) Ensures minimum steady‐state oscillations and (ii) exhibits improved dynamic performance under disturbances in the grid and load. The proposed structure effectively confronts the various power quality challenges while injecting the active power into the utility grid. Further, the incremental‐conductance‐based maximum power point tracking algorithm is equipped to extract the maximum possible power from the photovoltaic array. Finally, the effectiveness of the proposed ACCE structure has been investigated through MATLAB/Simulink software studies followed by dSPACE‐1104‐based experimental setup.
url https://doi.org/10.1049/pel2.12108
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