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中美贸易战根源与应对策略探析——基于“重复博弈”理论的视角 被引量:3
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作者 马啸腾 《时代金融》 2018年第33期12-14,26,共4页
中美经贸关系是经济全球化浪潮中不可忽视的大国经济联系。在世界经济整体复苏疲软的态势下,美方为维护自身国家利益而对中国政府采取的贸易保护策略非但未能缓和国内经济形势,反而促使贸易保护势力抬头,贸易摩擦不断升级,日益成为建构... 中美经贸关系是经济全球化浪潮中不可忽视的大国经济联系。在世界经济整体复苏疲软的态势下,美方为维护自身国家利益而对中国政府采取的贸易保护策略非但未能缓和国内经济形势,反而促使贸易保护势力抬头,贸易摩擦不断升级,日益成为建构互利共赢中美经贸关系的桎梏。本文基于"重复博弈"理论分析框架,通过探究特朗普政府素以贸易战著称的对华贸易保护政策,发现在充满动荡风险和不确定性的中美贸易关系现状之下中方采取"一报还一报"策略与美国开展有力、有节的博弈,能够为深入挖掘中美贸易结构性合作潜力和新型大国关系建构营造谨慎乐观的前景。 展开更多
关键词 中美贸易战 经贸关系 “重复博弈”理论
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TOWARDS A THEORY OF GAME-BASED NON-EQUILIBRIUM CONTROL SYSTEMS
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作者 Yifen MU Lei GUO 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2012年第2期209-226,共18页
This paper considers optimization problems for a new kind of control systems based on non-equilibrium dynamic games.To be precise,the authors consider the infinitely repeated games between a human and a machine based ... This paper considers optimization problems for a new kind of control systems based on non-equilibrium dynamic games.To be precise,the authors consider the infinitely repeated games between a human and a machine based on the generic 2×2 game with fixed machine strategy of finite k-step memory.By introducing and analyzing the state transfer graphes(STG),it will be shown that the system state will become periodic after finite steps under the optimal strategy that maximizes the human’s averaged payoff,which helps us to ease the task of finding the optimal strategy considerably. Moreover,the question whether the optimizer will win or lose is investigated and some interesting phenomena are found,e.g.,for the standard Prisoner’s Dilemma game,the human will not lose to the machine while optimizing her own averaged payoff when k = 1;however,when k≥2,she may indeed lose if she focuses on optimizing her own payoff only The robustness of the optimal strategy and identification problem are also considered.It appears that both the framework and the results are beyond those in the classical control theory and the traditional game theory. 展开更多
关键词 Heterogeneous players non-equilibrium dynamical games optimization state transfer graph win-loss criterion.
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