arXiv · 2409.08756
Cubature-based uncertainty estimation for nonlinear regression models
Abstract
Calibrating model parameters to measured data by minimizing loss functions is an important step in obtaining realistic predictions from model-based approaches, e.g., for process optimization. This is applicable to both knowledge-driven and data-driven model setups. Due to measurement errors, the calibrated model parameters also carry uncertainty. In this contribution, we use cubature formulas based on sparse grids to calculate the variance of the regression results. The number of cubature points is close to the theoretical minimum required for a given level of exactness. We present exact benchmark results, which we also compare to other cubatures. This scheme is then applied to estimate the prediction uncertainty of the NRTL model, calibrated to observations from different experimental designs.
Explore related subjects
Keep this discovery
Martin Bubel, Jochen Schmid, Maximilian Carmesin, Volodymyr Kozachynskyi, Erik Esche, Michael Bortz. 2024-09-13. Cubature-based uncertainty estimation for nonlinear regression models. https://arxiv.org/abs/2409.08756
Cite the original work for its findings. Save a collection to share your selection of sources.