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February 12, 2026Energies3 citationsOpen Access

Overcoming Technical and Operational Barriers in Low-Voltage Mini-Grids: Two Decades of Research Trends, Progress, and Pathways for Accelerated Rural Electrification (2005–2025)

SMSeth A. MahuFOFlavio Odoi-YorkeAAAkwasi Adu-Poku

Key Points

  • The study aims to explore technical challenges faced by low-voltage mini-grids and identify pathways for improvement.
  • Reviewed research trends from 2005 to 2025 using PRISMA approach.
  • Conducted bibliometric analysis on 155 publications from the Scopus database.
  • Used Bibliometrix in R Studio to assess publication trends and geographical contributions.
  • Performed qualitative synthesis to identify engineering and operational constraints.
  • Research outputs have steadily increased since 2020, driven by global policy such as Sustainable Development Goal 7.
  • Identified persistent barriers include voltage instability, poor power quality monitoring, and inadequate energy storage integration.
  • African nations contribute less to research despite facing significant energy poverty, indicating capacity gaps.
  • Advocated for integrated solutions combining smart control and hybrid storage to improve mini-grid reliability.

Abstract

Low-voltage mini-grids play a crucial role in expanding electricity access for rural and remote communities. However, they continue to face technical and operational barriers that hinder their performance and reliability. This study reviewed the evolution of research on technical challenges in low-voltage mini-grids from 2005 to 2025. Using the PRISMA approach, data were extracted from the Scopus database, yielding 155 publications for bibliometric analysis. Bibliometrix in R Studio was used to examine publication trends, geographical contributions, and thematic evolution, while qualitative synthesis identified key engineering and operational constraints. The findings revealed a steady increase in research outputs since 2020, driven by global policy commitments, including Sustainable Development Goal 7 and the Paris Agreement. Persistent technical barriers include voltage and frequency instability, inadequate power quality monitoring, inefficient integration of energy storage, poor control coordination, and limited system design optimisation. African nations contribute less to global research despite being most affected by energy poverty, highlighting capacity and funding gaps. The study highlights the need for integrated solutions combining smart control, hybrid storage, and grid-interconnection technologies to enhance resilience and reliability. For policymakers and practitioners, the findings advocate for investment in research, capacity building, and locally tailored technical standards designed for resource-constrained contexts. This review provides a comprehensive evidence base to guide future research and policy directions aimed at achieving sustainable, technically robust, and financially viable mini-grid systems for universal energy access.

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Cite This Study

Mahu et al. (2026) studied this question.

synapsesocial.com/papers/698d6ebb5be6419ac0d548a8https://doi.org/10.3390/en19040933
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