Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy
FYP 2 SEM 2 2019/2020
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2023
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my.uniten.dspace-212042023-05-04T00:13:39Z Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy Renugaa A/P Somasundara Pandian D-STATCOM Voltage Regulation PV FYP 2 SEM 2 2019/2020 With the rise in negative environmental impacts of fuel combustion as well as the reduced fuel stock, many countries have been forced to investigate and deviate towards environmentally friendly options to uphold the growing demand of energy. Electrical power generation from renewable energy sources has increased significantly in recent years and presently holds a major segment of the entire power generation within the country. Though much has been learned about power generation, there are still many serious stability and power quality issues arising due to accelerating demands for the development of renewable energy through solar plants in Distribution Generation (DG). For example, voltage imbalance, flow of transients and voltage fluctuations. This paper investigates on study of voltage stability for a 100 kW Solar Photovoltaic grid connected system using Distributed Static Compensator (D-STATCOM) control. The proposed D-STATCOM control is designed to compensate reactive power supply that reduces voltage fluctuations on the distribution side. Moreover, a DC-DC converter has been equipped in conjunction with three-phase DC-AC Voltage Source Converter (VSC) operating at unity power factor. The Maximum Power Point Tracking (MPPT) uses an Integral Regulator (IR) type of Incremental Conductance (IC). This helps to control the output voltage of the PV array and delivers maximum power. Fault is created for a particular duration at the grid side and the output result waveforms at Point of Common Coupling (PCC) have been acquired. In order to materialize this project, MATLAB/SIMULINK has been used to simulate the system to the show the effectiveness of D-STATCOM control grid-connected PV system. It is anticipated that this finding should be a stepping stone and as a motivation for future research. 2023-05-03T16:13:37Z 2023-05-03T16:13:37Z 2020-02 https://irepository.uniten.edu.my/handle/123456789/21204 en |
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D-STATCOM Voltage Regulation PV |
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D-STATCOM Voltage Regulation PV Renugaa A/P Somasundara Pandian Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy |
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FYP 2 SEM 2 2019/2020 |
format |
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author |
Renugaa A/P Somasundara Pandian |
author_facet |
Renugaa A/P Somasundara Pandian |
author_sort |
Renugaa A/P Somasundara Pandian |
title |
Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy |
title_short |
Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy |
title_full |
Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy |
title_fullStr |
Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy |
title_full_unstemmed |
Voltage Control Utilizing D-Statcom With The Integration Of Photovoltaic based Renewable Energy |
title_sort |
voltage control utilizing d-statcom with the integration of photovoltaic based renewable energy |
publishDate |
2023 |
_version_ |
1806428284220604416 |
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13.214268 |