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P-ISSN: 2971-785X
E-ISSN: 3141-4095

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Volume 2, Issue 1

Research Article

Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids

Published: April 25, 2025 | Volume: 2 | Issue: 1

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View Count: 29 Page No: 25-32

Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids

Sabo Aliyu1 corresponding author email *, Dahiru Dauda2 , Olutosin Adebayo Ogunleye3

Published: April 25, 2025 | Issue: Volume 2, Issue 1

Page No. 25–32

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Corresponding Author: Sabo Aliyu

Email: aliyu@nda.edu.ng

1 Department of Electrical and Electronics Engineering, Faculty of Engineering and Engineering Technology, Nigerian Defence Academy (NDA), Kaduna, Nigeria.

2 Department of Electrical and Electronics Engineering, Faculty of Engineering and Engineering Technology, Nigerian Defence Academy (NDA), Kaduna, Nigeria.

3 Department of Electrical and Electronics Engineering, Faculty of Engineering and Engineering Technology, Nigerian Defence Academy (NDA), Kaduna, Nigeria.

Received: April 2, 2025 Reviewed: April 22, 2025 Accepted: April 25, 2025

Abstract

This research looks into Using renewable energy sources like wind and solar photovoltaic (PV) systems is crucial to achieving a sustainable, low-carbon energy future. These systems are becoming more and more feasible because of their scalability and affordability. However, because of their intrinsic unpredictability, it is difficult to manage energy distribution, balance supply and demand, and preserve grid stability. Advanced control technologies including Phasor Measurement Units (PMUs), energy storage systems (ESS), and artificial intelligence (AI) can help wind and solar PV work together to maximize power generation, reduce waste, and improve grid resilience. Nigeria's energy landscape offers insights on the unrealized promise of renewable energy, especially in areas that continue to rely on fossil fuels. The study also looks at modern control strategies, such as machine learning and AI-based energy management, to reduce intermittency and increase operational effectiveness. The findings demonstrate how different technologies must be integrated in order to create a reliable and sustainable energy system.

Keywords: Wind Energy, Solar Energy, Power Electronics, AI, Grid stability

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APA
Sabo Aliyu et al. (2025). Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids. Nigerian Journal of Engineering Research, 2(1), 25-32. https://izlik.org/JA28WS58XL
AMA
Sabo Aliyu et al. Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids. Nigerian Journal of Engineering Research. 2025;2(1):25-32. https://izlik.org/JA28WS58XL
Chicago
Sabo Aliyu et al. 2025. \"Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids\". Nigerian Journal of Engineering Research 2 (1): 25-32. https://izlik.org/JA28WS58XL.
IEEE
[1] Sabo Aliyu et al., \"Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids\", Nigerian Journal of Engineering Research, vol. 2, no. 1, pp. 25-32, Apr 2025. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
Sabo Aliyu et al. \"Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids\". Nigerian Journal of Engineering Research, vol. 2, no. 1, Apr 2025, pp. 25-32, https://izlik.org/JA28WS58XL.
Vancouver
1. Sabo Aliyu et al. Decarbonizing Nigeria’s Power Sector Through Ai-Optimized Wind-Solar Hybrid Systems in Smart Grids. Nigerian Journal of Engineering Research [Internet]. 2025 Apr. 25;2(1):25-32. Available from: https://izlik.org/JA28WS58XL

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