English

Solving the Optimal Experiment Design Problem with Mixed-Integer Convex Methods

Optimization and Control 2025-11-21 v7

Abstract

We tackle the Optimal Experiment Design Problem, which consists of choosing experiments to run or observations to select from a finite set to estimate the parameters of a system. The objective is to maximize some measure of information gained about the system from the observations, leading to a convex integer optimization problem. We leverage Boscia.jl, a recent algorithmic framework, which is based on a nonlinear branch-and-bound algorithm with node relaxations solved to approximate optimality using Frank-Wolfe algorithms. One particular advantage of the method is its efficient utilization of the polytope formed by the original constraints which is preserved by the method, unlike alternative methods relying on epigraph-based formulations. We assess the method against both generic and specialized convex mixed-integer approaches. Computational results highlight the performance of the proposed method, especially on large and challenging instances.

Keywords

Cite

@article{arxiv.2312.11200,
  title  = {Solving the Optimal Experiment Design Problem with Mixed-Integer Convex Methods},
  author = {Deborah Hendrych and Mathieu Besançon and Sebastian Pokutta},
  journal= {arXiv preprint arXiv:2312.11200},
  year   = {2025}
}

Comments

51 pages, 7 figures, 10 table