Assessment of MPPT Techniques During the Faulty Conditions of PV System

The contribution of Distributed Generation (DG) systems like wind energy systems and solar Photovoltaic (PV) systems on the generation of electricity has increased. Out of these DG systems, the PV systems have gained wide popularity, because of the availability of solar energy throughout the day. De...

Full description

Bibliographic Details
Main Authors: Bhukya Krishna Naick, Kalyan Chatterjee, Tarun Kumar Chatterjee
Format: Article
Language:English
Published: VSB-Technical University of Ostrava 2018-01-01
Series:Advances in Electrical and Electronic Engineering
Subjects:
Online Access:http://advances.utc.sk/index.php/AEEE/article/view/2581
_version_ 1827947469362692096
author Bhukya Krishna Naick
Kalyan Chatterjee
Tarun Kumar Chatterjee
author_facet Bhukya Krishna Naick
Kalyan Chatterjee
Tarun Kumar Chatterjee
author_sort Bhukya Krishna Naick
collection DOAJ
description The contribution of Distributed Generation (DG) systems like wind energy systems and solar Photovoltaic (PV) systems on the generation of electricity has increased. Out of these DG systems, the PV systems have gained wide popularity, because of the availability of solar energy throughout the day. Depending on the size of PV installations, a large number of PV modules can be interconnected in the form of series and parallel connection. Since a large number of modules are interconnected, it is possible for the faults in a PV array to occur due to the failure of protection system, which can cause damage to the PV module and also the decrease in the output power. This paper presents the tracking of a maximum power point under the faulty conditions of 12x5 PV array. The fault conditions that have been considered in the PV array are open circuit fault, line to ground, line to line and failure of bypass diodes. Perturb and observe, incremental conductance and fuzzy logic controller are the maximum power point tracking techniques that have been implemented. For each of the fault conditions, the results have been presented in terms of the maximum power tracked, tracking time and tracking efficiency.
first_indexed 2024-04-09T12:40:27Z
format Article
id doaj.art-1d1ed07a12cd4f6c9056324d83ecf3e3
institution Directory Open Access Journal
issn 1336-1376
1804-3119
language English
last_indexed 2024-04-09T12:40:27Z
publishDate 2018-01-01
publisher VSB-Technical University of Ostrava
record_format Article
series Advances in Electrical and Electronic Engineering
spelling doaj.art-1d1ed07a12cd4f6c9056324d83ecf3e32023-05-14T20:50:12ZengVSB-Technical University of OstravaAdvances in Electrical and Electronic Engineering1336-13761804-31192018-01-01161152410.15598/aeee.v16i1.2581967Assessment of MPPT Techniques During the Faulty Conditions of PV SystemBhukya Krishna Naick0Kalyan Chatterjee1Tarun Kumar Chatterjee2Department of Electrical Engineering, Indian Institute of Technology (ISM), Dhanbad, 826004 Jharkhand, IndiaDepartment of Electrical Engineering, Indian Institute of Technology (ISM), Dhanbad, 826004 Jharkhand, IndiaDepartment of Mining Machinery Engineering, Indian Institute of Technology (ISM), Dhanbad, 826004 Jharkhand, IndiaThe contribution of Distributed Generation (DG) systems like wind energy systems and solar Photovoltaic (PV) systems on the generation of electricity has increased. Out of these DG systems, the PV systems have gained wide popularity, because of the availability of solar energy throughout the day. Depending on the size of PV installations, a large number of PV modules can be interconnected in the form of series and parallel connection. Since a large number of modules are interconnected, it is possible for the faults in a PV array to occur due to the failure of protection system, which can cause damage to the PV module and also the decrease in the output power. This paper presents the tracking of a maximum power point under the faulty conditions of 12x5 PV array. The fault conditions that have been considered in the PV array are open circuit fault, line to ground, line to line and failure of bypass diodes. Perturb and observe, incremental conductance and fuzzy logic controller are the maximum power point tracking techniques that have been implemented. For each of the fault conditions, the results have been presented in terms of the maximum power tracked, tracking time and tracking efficiency.http://advances.utc.sk/index.php/AEEE/article/view/2581fuzzy logic controllermaximum power point trackingpv system faultstracking efficiency.
spellingShingle Bhukya Krishna Naick
Kalyan Chatterjee
Tarun Kumar Chatterjee
Assessment of MPPT Techniques During the Faulty Conditions of PV System
Advances in Electrical and Electronic Engineering
fuzzy logic controller
maximum power point tracking
pv system faults
tracking efficiency.
title Assessment of MPPT Techniques During the Faulty Conditions of PV System
title_full Assessment of MPPT Techniques During the Faulty Conditions of PV System
title_fullStr Assessment of MPPT Techniques During the Faulty Conditions of PV System
title_full_unstemmed Assessment of MPPT Techniques During the Faulty Conditions of PV System
title_short Assessment of MPPT Techniques During the Faulty Conditions of PV System
title_sort assessment of mppt techniques during the faulty conditions of pv system
topic fuzzy logic controller
maximum power point tracking
pv system faults
tracking efficiency.
url http://advances.utc.sk/index.php/AEEE/article/view/2581
work_keys_str_mv AT bhukyakrishnanaick assessmentofmppttechniquesduringthefaultyconditionsofpvsystem
AT kalyanchatterjee assessmentofmppttechniquesduringthefaultyconditionsofpvsystem
AT tarunkumarchatterjee assessmentofmppttechniquesduringthefaultyconditionsofpvsystem