Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Hybrid Solar–Hydrogen Microgrid with PEM Electrolyzer Storage and Adaptive EMS for Off-Grid Rural Electrification

Domaine:

environment and energy

Type de record:

paper
Créateur:
Emm
Éditeur:
NER
Hôte:avatar

Sub-Saharan Africa hosts more than 570 million people without reliable access to electricity, with rural communities in mountainous terrain — such as Rwanda's Eastern Province — facing prohibitive grid-extension economics that average above 8,500 USD per kilometre of medium-voltage line. While solar photovoltaic (PV) systems coupled with lithium-ion battery storage have become the de-facto standard for off-grid electrification, battery-only architectures suffer from severe seasonal mismatch in equatorial climates where the long rainy season (March–May) produces 4–7 consecutive low-irradiance days that exceed the practical economic sizing of electrochemical storage. This paper presents the design, simulation and field validation of a hybrid solar–hydrogen microgrid that combines a 50 kWp PV array, an 8 kW Proton Exchange Membrane (PEM) electrolyzer, a 50 Nm³ compressed hydrogen tank, a 5 kW PEM fuel cell, and a 100 kWh lithium-iron-phosphate (LFP) battery, all coordinated by an adaptive Energy Management System (EMS) implemented on an STM32 micro-controller. The system was deployed at a 240-household village in Kayonza District, Rwanda, and benchmarked against five alternative configurations over a 20-year project lifecycle. Field measurements during the May 2025 monsoon period confirmed a Loss of Power Supply Probability (LPSP) of 0.6 %, a renewable energy fraction of 96 %, and a Levelised Cost of Electricity (LCOE) of 0.17 USD/kWh — a 32 % reduction relative to the best PV-battery configuration and a 60 % reduction relative to grid extension.

Visit

doi.org

Languages

Ndasa

Tags

hybrid microgrid, PEM electrolyzer, hydrogen storage, fuel cell, rural electrification, energy management system, LCOE, LPSP, Rwanda, Sub-Saharan Africa, off-grid, renewable energy.

Licenses

info:eu-repo/semantics/openAccessCreative Commons Attribution 4.0 Internationalhttps://creativecommons.org/licenses/by/4.0/legalcode

Similaires

Simulation and Optimization of an Off-Grid Solar–Hydropower Hybrid System for Sustainable Rural Electrification in Rivers State, NigeriaDesign and optimization of off‐grid hybrid renewable power plant with storage system for rural area in RwandaTechno-economic optimization of PV-wind-hydrogen hybrid microgrid for sustainable rural electrification in Ghana выпускная квалификационная работа магистраFeasibility Study of Integrated Hybrid Energy System for off-Grid Rural Electrification: Case of Three VillageDesign and Tier-Based Analysis of an Off-Grid Solar PV System for Swarm Rural Electrification in EthiopiaPlanning off-grid rural electrification with MicroGridsPy[ Case Study: Dugum, Bauchi State, Nigeria]

Simulation and Optimization of an Off-Grid Solar–Hydropower Hybrid System for Sustainable Rural Electrification in Rivers State, Nigeria

Abstract Energy conservation and sustainable power supply remain critical challe

Design and optimization of off‐grid hybrid renewable power plant with storage system for rural area in Rwanda

Abstract In this paper, a system comprising a solar photovoltaic (PV)/micro‐hydr

Techno-economic optimization of PV-wind-hydrogen hybrid microgrid for sustainable rural electrification in Ghana выпускная квалификационная работа магистра

3.5 million people from rural communities in Ghana still lack access to electricity, and grid extens

Feasibility Study of Integrated Hybrid Energy System for off-Grid Rural Electrification: Case of Three Village

This research presents a feasibility study of an integrated hybrid energy system designed for off gr

Design and Tier-Based Analysis of an Off-Grid Solar PV System for Swarm Rural Electrification in Ethiopia

Off-grid photovoltaic systems with battery storage are essential for sustainable rural electrificati

Planning off-grid rural electrification with MicroGridsPy[ Case Study: Dugum, Bauchi State, Nigeria]