Bayesian hypergame approach to equilibrium stability and robustness in moving target defense
Computer Science and Game Theory
2025-04-15 v1 Systems and Control
Systems and Control
Abstract
We investigate the equilibrium stability and robustness in a class of moving target defense problems, in which players have both incomplete information and asymmetric cognition. We first establish a Bayesian Stackelberg game model for incomplete information and then employ a hypergame reformulation to address asymmetric cognition. With the core concept of the hyper Bayesian Nash equilibrium (HBNE), a condition for achieving both the strategic and cognitive stability in equilibria can be realized by solving linear equations. Moreover, to deal with players' underlying perturbed knowledge, we study the equilibrium robustness by presenting a condition of robust HBNE under the given configuration. Experiments evaluate our theoretical results.
Keywords
Cite
@article{arxiv.2409.06610,
title = {Bayesian hypergame approach to equilibrium stability and robustness in moving target defense},
author = {Hanzheng Zhang and Zhaoyang Cheng and Guanpu Chen and Karl Henrik Johansson},
journal= {arXiv preprint arXiv:2409.06610},
year = {2025}
}