English

Distributed Equilibria for $N$-Player Differential Games with Interaction through Controls: Existence, Uniqueness and Large $N$ Limit

Analysis of PDEs 2026-04-01 v1 Optimization and Control

Abstract

We establish the existence and uniqueness of distributed equilibria to possibly nonsymmetric NN player differential games with interactions through controls under displacement semimonotonicity assumptions. Surprisingly, the nonseparable framework of the running cost combined with the character of distributed equilibria leads to a set of consistency relations different in nature from the ones for open and closed loop equilibria investigated in a recent work of Jackson and the second author. In the symmetric setting, we establish quantitative convergence results for the NN player games toward the corresponding Mean Field Games of Controls (MFGC), when N+N\to+\infty. Our approach applies to both idiosyncratic noise driven models and fully deterministic frameworks. In particular, for deterministic models distributed equilibria correspond to open loop equilibria, and our work seems to be the first in the literature to provide existence and uniqueness of these equilibria and prove the large NN convergence in the MFGC setting. The sharpness of the imposed assumptions is discussed via a set of explicitly computable examples in the linear quadratic setting.

Keywords

Cite

@article{arxiv.2603.29707,
  title  = {Distributed Equilibria for $N$-Player Differential Games with Interaction through Controls: Existence, Uniqueness and Large $N$ Limit},
  author = {Hei Jie Lam and Alpár R. Mészáros},
  journal= {arXiv preprint arXiv:2603.29707},
  year   = {2026}
}
R2 v1 2026-07-01T11:46:12.180Z