Best Researcher Award
| Cynthia Okoro-Shekwaga | |
|---|---|
| Affiliation | University of Leeds |
| Country | United Kingdom |
| Scopus ID | 57189838924 |
| Documents | 7 |
| Citations | 156 |
| h-index | 5 |
| Subject Area | Utilities Analytics |
| Event | Research Data Analysis Awards |
| ORCID | 0000-0003-2198-2034 |
Cynthia Okoro-Shekwaga
University of Leeds
Cynthia Okoro-Shekwaga is a researcher affiliated with the University of Leeds whose scholarly work contributes to the evolving field of utilities analytics. Her publications emphasize evidence-based analytical methods that support informed decision-making and operational improvement across infrastructure and service systems.[1] Her research profile demonstrates a developing academic record supported by peer-reviewed publications, citations, and international research visibility.[2]
Contents
Abstract
This article summarizes the academic profile of Cynthia Okoro-Shekwaga, highlighting her contributions to utilities analytics, publication record, citation performance, and scholarly visibility. The overview is prepared in a neutral encyclopedic style using publicly available research information.[1]
Keywords
Utilities analytics, research data analysis, infrastructure systems, operational analytics, sustainability, scholarly publications, citation metrics, University of Leeds.
Introduction
Utilities analytics integrates quantitative methods with engineering and management practices to improve system performance and resource efficiency. Cynthia Okoro-Shekwaga’s work reflects this interdisciplinary approach through practical and analytical research.[3]
Research Profile
The research profile includes seven indexed publications, 156 citations, and an h-index of five according to Scopus. These indicators demonstrate consistent scholarly engagement and measurable academic influence within the research community.[2]
Research Contributions
Her publications focus on analytical techniques that support utility operations, infrastructure planning, and evidence-based decision-making. The research emphasizes practical applications while maintaining methodological rigor suitable for academic and industrial contexts.[4]
Publications
The published studies contribute to discussions on utility management, performance assessment, and data-driven operational strategies. Citation activity indicates continuing relevance and engagement from researchers working in related analytical disciplines.[2]
Research Impact
Citation metrics and indexed publications provide evidence of scholarly recognition and academic dissemination. These indicators complement qualitative assessments of research quality and contribution to the advancement of utilities analytics.[5]
Award Suitability
Based on available bibliometric indicators and subject specialization, the researcher demonstrates characteristics commonly considered during academic recognition processes. Evaluation should additionally consider originality, collaboration, and sustained research contributions.[6]
Conclusion
Cynthia Okoro-Shekwaga has established a developing scholarly profile through publications, citations, and interdisciplinary research activities. Continued contributions in utilities analytics are expected to further strengthen academic visibility and research impact.
External Links
References
- Elsevier. (n.d.). Scopus author details: Cynthia Okoro-Shekwaga, Author ID 57189838924.
https://www.scopus.com/authid/detail.uri?authorId=57189838924 - Google Scholar. (n.d.). Scholar profile of Cynthia Okoro-Shekwaga.
https://scholar.google.com/citations?user=tDPLdpsAAAAJ&hl=en&oi=ao - Okoro-Shekwaga, C. K., Irumba, C., Saidu, I. S., Reilly, M., Kisaaka, E., Amanya, H., Semiyaga, S., Kulabako, R., Tumwesige, V., & Camargo-Valero, M. A. (2026). A comparative study on biohydrogen production from selected fruit peel wastes: Regional and experimental experiences. International Journal of Hydrogen Energy.
- Al-Haddad, S., Okoro-Shekwaga, C. K., Fletcher, L., Ross, A., & Camargo-Valero, M. A. (2023). Assessing different inoculum treatments for improved production of hydrogen through dark fermentation. Energies, 16(3), 1233.
https://www.mdpi.com/1996-1073/16/3/1233 - Okoro-Shekwaga, C. K., Ross, A., & Camargo-Valero, M. A. (2021). Enhancing bioenergy production from food waste by in situ biomethanation: Effect of the hydrogen injection point. Food and Energy Security, 10(3), e288.
https://onlinelibrary.wiley.com/doi/10.1002/fes3.288