用平均场对策逼近具有奇异控制的N人随机对策

IF 1.1 Q2 MATHEMATICS, APPLIED Numerical Algebra Control and Optimization Pub Date : 2022-02-14 DOI:10.3934/naco.2023001
Haoyang Cao, Xin Guo, Joon Seok Lee
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引用次数: 2

摘要

本文建立了一类具有有界速度或有限变化的奇异控制的$N$ -人随机对策,它们都可以用有界速度的奇异控制的平均场对策(mfg)来近似。更具体地说,它显示了(i)具有有界速度$\theta$的奇异控制的MFG的最优控制显示为具有有界速度$\epsilon_N = O(\frac{1}{\sqrt{N}})$的奇异控制的$N$ -玩家游戏的$\epsilon_N$ -NE,并且(ii)该MFG的最优控制是具有有限变化的奇异控制的$N$ -玩家游戏的$(\epsilon_N + \epsilon_{\theta})$ -NE,其中$\epsilon_{\theta}$是依赖于$\theta$的误差项。这项工作通过允许不连续控制,推广了mfg近似$N$ -玩家游戏的经典结果。
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Approximation of $ N $-player stochastic games with singular controls by mean field games
This paper establishes that a class of $N$-player stochastic games with singular controls, either of bounded velocity or of finite variation, can both be approximated by mean field games (MFGs) with singular controls of bounded velocity. More specifically, it shows (i) the optimal control to an MFG with singular controls of a bounded velocity $\theta$ is shown to be an $\epsilon_N$-NE to an $N$-player game with singular controls of the bounded velocity, with $\epsilon_N = O(\frac{1}{\sqrt{N}})$, and (ii) the optimal control to this MFG is an $(\epsilon_N + \epsilon_{\theta})$-NE to an $N$-player game with singular controls of finite variation, where $\epsilon_{\theta}$ is an error term that depends on $\theta$. This work generalizes the classical result on approximation $N$-player games by MFGs, by allowing for discontinuous controls.
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来源期刊
CiteScore
3.10
自引率
0.00%
发文量
62
期刊介绍: Numerical Algebra, Control and Optimization (NACO) aims at publishing original papers on any non-trivial interplay between control and optimization, and numerical techniques for their underlying linear and nonlinear algebraic systems. Topics of interest to NACO include the following: original research in theory, algorithms and applications of optimization; numerical methods for linear and nonlinear algebraic systems arising in modelling, control and optimisation; and original theoretical and applied research and development in the control of systems including all facets of control theory and its applications. In the application areas, special interests are on artificial intelligence and data sciences. The journal also welcomes expository submissions on subjects of current relevance to readers of the journal. The publication of papers in NACO is free of charge.
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