Research Article

CONSTRUCTING THE ENERGY POVERTY INDEX FOR RESIDENTIAL BUILDINGS IN SUB-SAHARAN AFRICA: A SYSTEMATIC REVIEW OF BUILT ENVIRONMENT INDICATORS

1 Department of Building Technology, Akwa Ibom State Polytechnic, Ikot Ekpene, Akwa Ibom State, Nigeria
2 Department of Quantity Surveying, University of Uyo, Uyo, Akwa Ibom State, Nigeria
3 Department of Estate Management, School of Environmental Studies, Akwa Ibom State Polytechnic, Ikot Ekpene, Nigeria
* Corresponding author: henryokpo24@gmail.com
Published: Mar, 2026
Pages: 16-33
Views: 20
Downloads: 2

Abstract

Purpose: The Multidimensional Energy Poverty Index (MEPI), the dominant framework for measuring household energy deprivation in Sub-Saharan Africa (SSA), systematically excludes residential built environment variables, construction quality, thermal envelope performance, building code compliance, and informal settlement classification. This paper constructs a Built Environment Multidimensional Energy Poverty Index (BE-MEPI) integrating physical dwelling characteristics as structural determinants of energy poverty. Design/Methodology/Approach: A PRISMA 2020 systematic review across four databases, Scopus, Web of Science, ScienceDirect, and Google Scholar, yielded 27 peer-reviewed studies (2011–2026). Thematic synthesis and framework-building methodology were applied to identify indicator gaps and construct the proposed index. Findings: Five built environment dimensions are absent from existing MEPI applications: building material durability; thermal envelope performance; daylighting and ventilation adequacy; building code compliance; and informal settlement spatial classification. The BE-MEPI comprises 13 indicators across five pillars, compatible with Demographic and Health Survey infrastructure and the Alkire-Foster dual-cutoff protocol. Originality/Value: This paper makes the first systematic attempt to construct a built-environment sensitive MEPI extension for SSA, enabling critical policy distinctions between income-driven and built-environment-driven energy poverty, and implicating construction professionals, architects, and housing regulators as essential actors in energy poverty alleviation. Research limitations/Implications: Key limitations include the resource-intensive nature of the thermal comfort indicator, the absence of a standardised structural integrity assessment protocol in SSA, and a baseline weighting scheme requiring empirical validation. Pilot application across diverse SSA urban morphologies is needed to establish benchmark scores and k-cutoffs. Practical implications: The BE-MEPI offers direct policy relevance for SSA energy ministries, urban planners, and international development partners by linking construction quality to energy outcomes, enabling cross-ministerial data integration, and supporting SDG7-aligned monitoring beyond binary energy access metrics. 
How to Cite

Okpo, H. A., Ekung, S. B., & Udoka, I. (2026). CONSTRUCTING THE ENERGY POVERTY INDEX FOR RESIDENTIAL BUILDINGS IN SUB-SAHARAN AFRICA: A SYSTEMATIC REVIEW OF BUILT ENVIRONMENT INDICATORS. Journal of Contemporary Research in the Built Environment, 10(1), 16-33. https://doi.org/10.68128/jocrebe.2026.xf6u82lm

H. A. Okpo, S. B. Ekung, and I. Udoka, "CONSTRUCTING THE ENERGY POVERTY INDEX FOR RESIDENTIAL BUILDINGS IN SUB-SAHARAN AFRICA: A SYSTEMATIC REVIEW OF BUILT ENVIRONMENT INDICATORS," Journal of Contemporary Research in the Built Environment, vol. 10, no. 1, pp. 16-33, March 2026. doi: 10.68128/jocrebe.2026.xf6u82lm

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