arXiv · 2603.27208
Linear-quadratic mixed Stackelberg-zero-sum game for mean-field regime switching system
Abstract
Motivated by a green finance problem, a linear-quadratic Stackelberg differential game for a regime switching system involving one leader and two followers is studied. The two followers engage in a zero-sum differential game, and both the state system and the cost functional incorporate a conditional mean-field term. Applying continuation method and induction method, we first establish the existence and uniqueness of the conditional mean-field forward-backward stochastic differential equations with Markovian switching. Based on it, we prove the unique solvability of Hamiltonian systems associated with the two followers and the leader. Moreover, utilizing stochastic maximum principle, decoupling approach and optimal filtering technique, we obtain the optimal feedback strategies for the two followers and the leader. Employing the theoretical results, we solve the green finance problem with some numerical simulations.
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Pengyan Huang, Na Li, Zuo Quan Xu, Harry Zheng. 2026-03-28. Linear-quadratic mixed Stackelberg-zero-sum game for mean-field regime switching system. https://arxiv.org/abs/2603.27208
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