The Energy System Ontology: A conceptual framework for energy transition research

The energy transition is characterized by the increasing complexity and interdependence of technological, economic, policy, environmental, and social dimensions. While a large and rapidly growing body of literature addresses these aspects, differences in terminology, conceptual scope, and analytical focus hinder the integration of findings across studies and the alignment of diverse modeling approaches. This paper presents the Energy System Ontology (ESO), a comprehensive conceptual framework developed to bridge these gaps and support the structured organization and synthesis of knowledge related to energy systems and energy transition. ESO is constructed through a systematic, multidisciplinary review of the energy transition literature combined with ontology engineering principles to ensure robustness. The framework identifies and formalizes core relationships across energy technologies, markets, policies, and environmental contexts, enabling a consistent representation of the energy nexus while preserving vital disciplinary distinctions. The resulting ontology provides a domain-wide reference that supports comparative analysis, semantic interoperability across heterogeneous energy-system representations, and the systematic exploration of transition pathways. The current evaluation provides requirements-based verification and application-oriented evidence rather than independent external validation. By offering an explicit and extensible structure, ESO contributes to greater transparency and provides a robust framework for the analysis of socio-technical systems within the energy transition.

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Publication Details

Journal
Renewable and Sustainable Energy Reviews
Published
2026-09-29
DOI
https://doi.org/10.1016/j.rser.2026.117538
Primary Topic
Integrated Energy Systems Optimization
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article
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The Energy System Ontology: A conceptual framework for energy transition research

Antonio De Nicola, Daniela Luzi, Rocio A Diaz-Chavez, Yara Evans et al.
Renewable and Sustainable Energy Reviews
Integrated Energy Systems Optimization
article

The Energy System Ontology: A conceptual framework for energy transition research

Antonio De Nicola, Daniela Luzi, Rocio A Diaz-Chavez, Yara Evans, Aleksandra Wagner, Clemens Striebing, Fabrizio Pecoraro, Gregorio D’Agostino, Tatiana Patriarca, Benedetto Fresilli, Nunzia Leonardi
article en

Abstract

The energy transition is characterized by the increasing complexity and interdependence of technological, economic, policy, environmental, and social dimensions. While a large and rapidly growing body of literature addresses these aspects, differences in terminology, conceptual scope, and analytical focus hinder the integration of findings across studies and the alignment of diverse modeling approaches. This paper presents the Energy System Ontology (ESO), a comprehensive conceptual framework developed to bridge these gaps and support the structured organization and synthesis of knowledge related to energy systems and energy transition. ESO is constructed through a systematic, multidisciplinary review of the energy transition literature combined with ontology engineering principles to ensure robustness. The framework identifies and formalizes core relationships across energy technologies, markets, policies, and environmental contexts, enabling a consistent representation of the energy nexus while preserving vital disciplinary distinctions. The resulting ontology provides a domain-wide reference that supports comparative analysis, semantic interoperability across heterogeneous energy-system representations, and the systematic exploration of transition pathways. The current evaluation provides requirements-based verification and application-oriented evidence rather than independent external validation. By offering an explicit and extensible structure, ESO contributes to greater transparency and provides a robust framework for the analysis of socio-technical systems within the energy transition.

Renewable and Sustainable Energy ReviewsVol. 244
Jagiellonian University (PL), Marconi University (IT), Fraunhofer Institute for Industrial Engineering (DE), Institute for Research on Population and Social Policies (IT), National Agency for New Technologies Energy and Sustainable Economic Development (GB), Imperial College London (GB)
Openalex Percentile: Top 21%
Integrated Energy Systems Optimization
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