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首页> 外文期刊>Annals of nuclear energy >A game-theoretic approach to nuclear fuel cycle transition analysis under uncertainty
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A game-theoretic approach to nuclear fuel cycle transition analysis under uncertainty

机译:不确定条件下核燃料循环过渡分析的博弈论方法

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摘要

We present a novel methodology for optimizing nuclear fuel cycle transitions that incorporates a game-theoretic approach and captures interactions among multiple decision makers. The methodology is demonstrated using a two-person sequential game with uncertainty, where the two players represent a policy maker and an electric utility company, though the method generalizes to any number and type of individual decision making entities. Coupled with a sophisticated nuclear fuel cycle simulator, rich transition scenarios may be analyzed to identify robust transition strategies. These strategies explicitly treat uncertainties using a stochastic programming approach, devising optimal near-term hedging strategies that simultaneously consider all possible states of the world, maintaining flexibility to allow for intelligent recourse decisions once uncertainties are resolved. In the demonstration game, reactor technology and fuel cycle scheme adopted by the electric utility are shown to depend on both the policy maker's decisions and the distributions over uncertain technological and economic outcomes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们提出了一种优化核燃料循环过渡的新颖方法,该方法结合了博弈论方法并捕获了多个决策者之间的相互作用。使用不确定性的两人连续博弈证明了该方法,尽管该方法可以推广到任何数量和类型的单个决策实体,但其中两个参与者代表决策者和电力公司。结合复杂的核燃料循环模拟器,可以分析丰富的过渡场景,以确定可靠的过渡策略。这些策略使用随机规划方法显式地处理不确定性,设计出最佳的近期对冲策略,同时考虑世界上所有可能的状态,并在解决不确定性后保持灵活性,以做出明智的追索决定。在演示游戏中,电力公司采用的反应堆技术和燃料循环方案显示出取决于决策者的决策以及不确定的技术和经济成果的分配。 (C)2019 Elsevier Ltd.保留所有权利。

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