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Sensitivity Coefficient Evaluation of an Accelerator-Driven System Using ROM-Lasso Method

Ryota Katano, Akio Yamamoto, Tomohiro Endo

Nuclear Science and Engineering / Volume 196 / Number 10 / October 2022 / Pages 1194-1208

Technical Paper / dx.doi.org/10.1080/00295639.2022.2067447

Received:January 13, 2022
Accepted:April 14, 2022
Published:August 29, 2022

We propose the use of reduced-order modeling to improve the sensitivity coefficient evaluation method based on Lasso-type penalized linear regression. In this method, cross sections of interest are uniformly randomly sampled, and corresponding perturbed core analyses are performed. The sensitivity coefficients of the higher-dimensional model are expanded by the active subspace (AS) attained by the lower-dimensional model, and the expansion coefficients are estimated by the Lasso regression. In addition, AS bases can be flexibly chosen according to neutronics parameters of interest. We conducted a verification calculation for an accelerator-driven system and clarified that the proposed method successfully reduces the calculation cost by a couple of orders of magnitude compared with the direct method. The proposed method can be used to practically evaluate the sensitivity coefficients of various parameters.