Digital Twin (DT) technology has emerged as a valuable tool for researchers and en-gineers, enabling them to optimize performance and enhance system efficiency. This paper presents a comprehensive Systematic Literature Review (SLR) following the PRISMA framework to explore current applications of DT technology in the power generation sector while highlighting key advancements. A new framework is developed to categorize DTs in terms of time-scale horizons and applications, focusing on power plant types (emissive vs. non-emissive), operational behaviors (including condition monitoring, predictive maintenance, fault detection, power generation predic-tion, and optimization), and specific components (e.g., power transformers). The time-scale is subdivided into a six-level structure to precisely indicate the speed and time range at which it is used. More importantly, each category in the application is further subcategorized into a three-level framework: component-level (i.e., fundamental physical properties and operational characteristics), system-level (i.e., interac-tion of subsystems and optimization), and service-level (i.e., value-adding service outputs). This classification can be utilized by various parties, such as stakeholders, engineers, scientists, and policymakers, to gain both a general and detailed understanding of potential research and operational gaps. Addressing these gaps could im-prove asset longevity and reduce energy consumption and emissions.

Applications of the Digital Twin and the Related Technologies Within the Power Generation Sector: A Systematic Literature Review / Shah Moradi, Saeid; Hosseiniimani, Seyedmahmood; Mazza, Andrea; Pons, Enrico. - In: ENERGIES. - ISSN 1996-1073. - ELETTRONICO. - 18:(2025), p. https://www.mdpi.com/1996-1073/18/21/5627. [10.3390/en18215627]

Applications of the Digital Twin and the Related Technologies Within the Power Generation Sector: A Systematic Literature Review

Saeid Shah moradi;Seyedmahmood Hosseiniimani;Andrea Mazza;Enrico Pons
2025

Abstract

Digital Twin (DT) technology has emerged as a valuable tool for researchers and en-gineers, enabling them to optimize performance and enhance system efficiency. This paper presents a comprehensive Systematic Literature Review (SLR) following the PRISMA framework to explore current applications of DT technology in the power generation sector while highlighting key advancements. A new framework is developed to categorize DTs in terms of time-scale horizons and applications, focusing on power plant types (emissive vs. non-emissive), operational behaviors (including condition monitoring, predictive maintenance, fault detection, power generation predic-tion, and optimization), and specific components (e.g., power transformers). The time-scale is subdivided into a six-level structure to precisely indicate the speed and time range at which it is used. More importantly, each category in the application is further subcategorized into a three-level framework: component-level (i.e., fundamental physical properties and operational characteristics), system-level (i.e., interac-tion of subsystems and optimization), and service-level (i.e., value-adding service outputs). This classification can be utilized by various parties, such as stakeholders, engineers, scientists, and policymakers, to gain both a general and detailed understanding of potential research and operational gaps. Addressing these gaps could im-prove asset longevity and reduce energy consumption and emissions.
2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/3004544
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