From Few-Shot Optimal Control to Few-Shot Learning
Optimization and Control
2025-03-18 v1 Numerical Analysis
Numerical Analysis
Abstract
We present an approach to solving unconstrained nonlinear optimal control problems for a broad class of dynamical systems. This approach involves lifting the nonlinear problem to a linear ``super-problem'' on a dual Banach space, followed by a non-standard ``exact'' variational analysis, -- culminating in a descent method that achieves rapid convergence with minimal iterations. We investigate the applicability of this framework to mean-field control and discuss its perspectives for the analysis of information propagation in self-interacting neural networks.
Cite
@article{arxiv.2503.13298,
title = {From Few-Shot Optimal Control to Few-Shot Learning},
author = {Roman Chertovskih and Nikolay Pogodaev and Maxim Staritsyn and A. Pedro Aguiar},
journal= {arXiv preprint arXiv:2503.13298},
year = {2025}
}
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6 pages