Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Design, Simulation and Analysis of a 3 MW Grid-connected Solar PV System in Nigeria Using Matlab/Simulink

Domain:

environment and energy

Record type:

papersoftware
Creator:
NsiImoAntHen
Editor:
Dep
Publisher:
CCSD
Host:avatar
International audience One of the most important ways to meet rising energy demands while lessening the impact on the environment is to integrate renewable energy sources into the electrical grid. The design, modelling, and analysis of a 3 MW grid-connected solar photovoltaic (PV) system in Nigeria are presented in this paper. To ascertain the system's voltage, current, and power outputs, its performance was assessed under various levels of solar irradiance. The system produced 9555 A, 319 V, and 3 MW in total at an irradiance of 1 kW/m². The voltage marginally increased to 321.1 V when the irradiance was decreased to 0.8 kW/m2, but the current and power dropped to 7651 A and 2.5 MW, respectively. The voltage rose to 322.7 V at 0.6 kW/m², while the current and power decreased to 5739 A and 1.9 MW, respectively. The voltage dropped marginally to 321.8 V at the lowest tested irradiance of 0.4 kW/m2, while the current and power dropped to 3833 A and 1.2 MW, respectively. These results show that PV array output is influenced by solar irradiance, with higher irradiance levels resulting in higher power output. The study underscores the importance of optimizing PV system designs to account for fluctuating irradiance in order to ensure efficient energy generation in a variety of climatic conditions.

Visit

hal.science

Tags

[SPI]Engineering Sciences [physics]

Similar

Agricultural Grid Connected Photovoltaic System Design and Simulation in Egypt by using PVSYST SoftwareOptimal Design of Grid-Connected Solar Photovoltaic System Using Selective Particle Swarm OptimizationLoss, Performance and Carbon Analysis of the Grid-Connected PV System, Rivers State University using PV systSolar Energy Potential in Horn of Africa: A Comparative Study Using Matlab/SimulinkPerformance and Yield Assessment of Grid – Connected Solar Photovoltaic (PV) Dispersed Generation in NigeriaAssessing the Efficiency of the Zagtouli Solar Plant: A Large-Scale Grid-Connected PV System in Burkina Faso

Agricultural Grid Connected Photovoltaic System Design and Simulation in Egypt by using PVSYST Software

Agricultural Photovoltaic Systems are a key technology to achieve sustainable development goals by r

Optimal Design of Grid-Connected Solar Photovoltaic System Using Selective Particle Swarm Optimization

The electricity distribution network in Ethiopia has the radial nature of network configuration. The

Loss, Performance and Carbon Analysis of the Grid-Connected PV System, Rivers State University using PV syst

This research centres on analyzing the losses and hence, the performance of the PV plant connect

Solar Energy Potential in Horn of Africa: A Comparative Study Using Matlab/Simulink

Geographically, the Horn of Africa is one of the regions that the Equator passes over, providing the

Performance and Yield Assessment of Grid – Connected Solar Photovoltaic (PV) Dispersed Generation in Nigeria

The problem of Renewable Dispersed Generation (RDG) and renewable resource harnessing in most cases,

Assessing the Efficiency of the Zagtouli Solar Plant: A Large-Scale Grid-Connected PV System in Burkina Faso

This paper presents an evaluation and analysis of the energy performance of a 33.7 MWp sola