An Exact Penalty Approach for Equality Constrained Optimization over a Convex Set
Abstract
In this paper, we consider the nonlinear constrained optimization problem (NCP) with constraint set , where is a closed convex subset of . We propose an exact penalty approach, named constraint dissolving approach, that transforms (NCP) into its corresponding constraint dissolving problem (CDP). The transformed problem (CDP) admits as its feasible region with a locally Lipschitz smooth objective function. We prove that (NCP) and (CDP) share the same first-order stationary points, second-order stationary points, second-order sufficient condition (SOSC) points, and strong SOSC points, in a neighborhood of the feasible region. Moreover, we prove that these equivalences extend globally under a particular error bound condition. Therefore, our proposed constraint dissolving approach enables direct implementations of optimization approaches over and inherits their convergence properties to solve problems that take the form of (NCP). Preliminary numerical experiments illustrate the high efficiency of directly applying existing solvers for optimization over to solve (NCP) through (CDP). These numerical results further demonstrate the practical potential of our proposed constraint dissolving approach.
Cite
@article{arxiv.2505.02495,
title = {An Exact Penalty Approach for Equality Constrained Optimization over a Convex Set},
author = {Nachuan Xiao and Tianyun Tang and Shiwei Wang and Kim-Chuan Toh},
journal= {arXiv preprint arXiv:2505.02495},
year = {2025}
}
Comments
34 pages