Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems

This paper focuses on delivering an effective performance qualification (PQ) control strategy for a grid connected photovoltaic (PV) system. A PV-based distributed generation system with a capacity of 10 kilo volt amps (kVA) was connected to the utility side of a power grid operating at 415 V. The p...

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Main Author: V. Rajini
Format: Article
Language:English
Published: Sultan Qaboos University 2014-12-01
Series:The Journal of Engineering Research
Subjects:
Online Access:https://journals.squ.edu.om/index.php/tjer/article/view/153
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author V. Rajini
author_facet V. Rajini
author_sort V. Rajini
collection DOAJ
description This paper focuses on delivering an effective performance qualification (PQ) control strategy for a grid connected photovoltaic (PV) system. A PV-based distributed generation system with a capacity of 10 kilo volt amps (kVA) was connected to the utility side of a power grid operating at 415 V. The power grid was modelled with a capacity of 100 kVA, 11 kV, and 100 km transmission line length. The PQ control strategy was implemented with three hysteresis-based current control techniques. To overcome the drawbacks of conventional hysteresis-control techniques, adaptive tuning of the hysteresis band was carried out, and a vector-based hysteresis current control is proposed to improve the results.
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spelling doaj.art-beca51cda24c4ac18f2bb627c5b52f0d2022-12-21T22:41:16ZengSultan Qaboos UniversityThe Journal of Engineering Research1726-60091726-67422014-12-01121324310.24200/tjer.vol12iss1pp32-43153Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic SystemsV. Rajini0Department of Electrical and Electronics Engineering, Sri Sivasubramaniya Nadar (SSN) College of Engineering, Kalavakkam, IndiaThis paper focuses on delivering an effective performance qualification (PQ) control strategy for a grid connected photovoltaic (PV) system. A PV-based distributed generation system with a capacity of 10 kilo volt amps (kVA) was connected to the utility side of a power grid operating at 415 V. The power grid was modelled with a capacity of 100 kVA, 11 kV, and 100 km transmission line length. The PQ control strategy was implemented with three hysteresis-based current control techniques. To overcome the drawbacks of conventional hysteresis-control techniques, adaptive tuning of the hysteresis band was carried out, and a vector-based hysteresis current control is proposed to improve the results.https://journals.squ.edu.om/index.php/tjer/article/view/153pq control, pv-based distribution grid system, vector-based hysteresis current control, adaptive hysteresis current control, conventional hysteresis current control.
spellingShingle V. Rajini
Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems
The Journal of Engineering Research
pq control, pv-based distribution grid system, vector-based hysteresis current control, adaptive hysteresis current control, conventional hysteresis current control.
title Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems
title_full Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems
title_fullStr Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems
title_full_unstemmed Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems
title_short Investigations on Hysteresis-Based Current Control Techniques for Grid Connected Photovoltaic Systems
title_sort investigations on hysteresis based current control techniques for grid connected photovoltaic systems
topic pq control, pv-based distribution grid system, vector-based hysteresis current control, adaptive hysteresis current control, conventional hysteresis current control.
url https://journals.squ.edu.om/index.php/tjer/article/view/153
work_keys_str_mv AT vrajini investigationsonhysteresisbasedcurrentcontroltechniquesforgridconnectedphotovoltaicsystems