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Analysis of performance of a grid connected solar photovoltaic power system at Holy Name University / Vanessa Gail N. Barong, ECE.

By: [Cebu City, Philippines] : [University of San Carlos], 2022Description: 161 pages : color illustrations ; 28 cmSubject(s): DDC classification:
  • 23 621.31244 B26 2022
Summary: The electricity power generated from photovoltaic (PV) array depends mainly on climate conditions. So, the PV solar grid connected inverters should equip with control system to meet fast response of solar irradiance change. This paper describes steady state performance of the PV grid-connected system at different solar irradiances. The proposed system model is built on MATLAB/Simulink, including the PV array with a modified perturb and observe (MP&O) tracker connected to DC-DC boost converter, the three-phase three level electronic power inverter is connected to the utility grid (UG) through low pass filter, coupling transformer and synchronizing control system of PV inverter and UG. The proposed system is simulated under daily weather conditions to test its operating performance. The simulation results of the proposed system satisfy requirements grid performance with high power quality.
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Theses Theses College Library Theses Section FIL Th 621.31244 B26 2022 (Browse shelf(Opens below)) Available HNU005293

Includes bibliographical references.

The electricity power generated from photovoltaic (PV) array depends mainly on climate conditions. So, the PV solar grid connected inverters should equip with control system to meet fast response of solar irradiance change. This paper describes steady state performance of the PV grid-connected system at different solar irradiances. The proposed system model is built on MATLAB/Simulink, including the PV array with a modified perturb and observe (MP&O) tracker connected to DC-DC boost converter, the three-phase three level electronic power inverter is connected to the utility grid (UG) through low pass filter, coupling transformer and synchronizing control system of PV inverter and UG. The proposed system is simulated under daily weather conditions to test its operating performance. The simulation results of the proposed system satisfy requirements grid performance with high power quality.

College of Engineering and Computer Studies Bachelor of Science in Electronics Engineering

In English

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