English

A new perspective on dynamic network flow problems via port-Hamiltonian systems

Optimization and Control 2023-09-06 v2 Numerical Analysis Dynamical Systems Numerical Analysis

Abstract

We suggest a global perspective on dynamic network flow problems that takes advantage of the similarities to port-Hamiltonian dynamics. Dynamic minimum cost flow problems are formulated as open-loop optimal control problems for general port-Hamiltonian systems with possibly state-dependent system matrices. We prove well-posedness of these systems and characterize optimal controls by the first-order optimality system, which is the starting point for the derivation of an adjoint-based gradient descent algorithm. Our theoretical analysis is complemented by a proof of concept, where we apply the proposed algorithm to static minimum cost flow problems and dynamic minimum cost flow problems on a simple directed acyclic graph. We present numerical results to validate the approach.

Keywords

Cite

@article{arxiv.2303.15082,
  title  = {A new perspective on dynamic network flow problems via port-Hamiltonian systems},
  author = {Onur Tanil Doganay and Kathrin Klamroth and Bruno Lang and Michael Stiglmayr and Claudia Totzeck},
  journal= {arXiv preprint arXiv:2303.15082},
  year   = {2023}
}
R2 v1 2026-06-28T09:35:13.664Z