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September 10, 2025International Journal of Power Electronics and Drive Systems/International Journal of Electrical and Computer EngineeringOpen Access

Design and optimization of hybrid microgrid renewable energy system for electricity sustainability in remote area

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Authors

TOTheresa Chinyere OgbuanyaTATaiwo Felix Adebayo

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Overview

Analysis reveals a hybrid energy system using solar and biogas enhances sustainability in rural areas, suggesting effective solutions for off-grid communities.

Key Points

  • The hybrid energy system design offers a more reliable power source for off-grid rural communities.
  • Case-1 configuration shows a net present cost of $1,225,914, indicating economic viability.
  • The use of particle swarm optimization enhances cost-effectiveness in implementing renewable energy systems.
  • The analysis suggests biogas generators are essential for ensuring sustainable energy in remote areas.

Cite This Study

Ogbuanya et al. (2025) studied this question.

synapsesocial.com/papers/68c187339b7b07f3a0611b65https://doi.org/10.11591/ijpeds.v16.i3.pp2063-2071
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Also Consider

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  1. 1Optimal Sizing, Energy Balance, Load Management and Performance Analysis of a Hybrid Renewable Energy System2024 · 2 citations
  2. 2Optimization and Cost Analysis of an Off-Grid Hybrid Power System for Rural Electrification: A Case Study of Pawi District, Ethiopia2026
  3. 3Optimal design of hybrid renewable energy conversion systems using two configurations and four different algorithms for a rural village in Egypt2026
  4. 4Techno-economic optimization of a standalone hybrid pv-diesel-battery system for rural electrification using genetic algorithm2025
  5. 5Optimizing off-grid residential hybrid systems with and without energy storage: A constriction-coefficient PSO approach to cost, reliability, and emissions trade-offs2026