DOE OSTI · 2468629
Integrating Control Methods and Digital Twins for Advanced Nuclear Reactors
Abstract
Advanced nuclear reactors offer new capabilities such as the ability to adapt to variable energy demand, operate autonomously with remote supervision, be deployable in rural locations, be compact in size, afford lower power ratings, and rely on novel techniques for increased operational safety. However, realizing these capabilities requires intelligent control systems that can track changing power demands and make autonomous decisions based on these demands. The unique aspects of advanced reactors (e.g., strict regulatory requirements, harsh operating environments, high consequences, highly coupled dynamics, evolving knowledge, and limited operating histories) directly impact the design and deployment of control systems for these reactors. The present work identifies and evaluates these aspects so as to develop a set of control system requirements to guide future research and development. To meet these requirements, a layered control system approach is proposed that integrates digital twins with different control paradigms. This work aims to demonstrate how different methods interface with enabling solutions, and to identify any gaps that need to be researched.
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Farber, Jacob A, Al Rashdan, Ahmad Y, Montezzo Coelho, Maria Eduarda, Primer, Craig A, Yadav, Vaibhav. 2023-07-15. Integrating Control Methods and Digital Twins for Advanced Nuclear Reactors. https://doi.org/10.13182/npichmit23-41489
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