English

A multi-material transport problem with arbitrary marginals

Analysis of PDEs 2021-04-30 v4 Optimization and Control

Abstract

In this paper we study general transportation problems in Rn\mathbb{R}^n, in which mm different goods are moved simultaneously. The initial and final positions of the goods are prescribed by measures μ\mu^-, μ+\mu^+ on Rn\mathbb{R}^n with values in Rm\mathbb{R}^m. When the measures are finite atomic, a discrete transportation network is a measure TT on Rn\mathbb{R}^n with values in Rn×m\mathbb{R}^{n\times m} represented by an oriented graph G\mathcal{G} in Rn\mathbb{R}^n whose edges carry multiplicities in Rm\mathbb{R}^m. The constraint is encoded in the relation div(T)=μμ+{\rm div}(T)=\mu^--\mu^+. The cost of the discrete transportation TT is obtained integrating on G\mathcal{G} a general function C:RmR\mathcal{C}:\mathbb{R}^m\to\mathbb{R} of the multiplicity. When the initial data (μ,μ+)\left(\mu^-,\mu^+\right) are arbitrary (possibly diffuse) measures, the cost of a transportation network between them is computed by relaxation of the functional on graphs mentioned above. Our main result establishes the existence of cost-minimizing transportation networks for arbitrary data (μ,μ+)\left(\mu^-,\mu^+\right). Furthermore, under additional assumptions on the cost integrand C\mathcal{C}, we prove the existence of transportation networks with finite cost and the stability of the minimizers with respect to variations of the given data. Finally, we provide an explicit integral representation formula for the cost of rectifiable transportation networks, and we characterize the costs such that every transportation network with finite cost is rectifiable.

Keywords

Cite

@article{arxiv.1807.10969,
  title  = {A multi-material transport problem with arbitrary marginals},
  author = {Andrea Marchese and Annalisa Massaccesi and Salvatore Stuvard and Riccardo Tione},
  journal= {arXiv preprint arXiv:1807.10969},
  year   = {2021}
}

Comments

44 pages. The latest version, v4, contains some clarifications on the proof of Proposition 9.8

R2 v1 2026-06-23T03:17:59.814Z