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A Fuzzy Gradient Chance-Constrained Evacuation Model for Managing Risks of Nuclear Power Plants under Multiple Uncertainties

机译:多不确定性下核电厂风险管理的模糊梯度机会约束疏散模型

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摘要

Emergency evacuation is one of the most important risk management measures for nuclear accidents. Evacuation management systems contain various complexities, which have posed many challenges for decision makers. In the study, a fuzzy gradient chance-constrained evacuation model (FGCCEM) is proposed to address different uncertainties in evacuation management and planning. The FGCCEM is developed by incorporating fuzzy gradient chance-constrained programming into an inexact optimization framework. It is capable of balancing decision makers' optimism and pessimism, and can also reflect uncertainties expressed as discrete intervals. The proposed model is applied to a hypothetical case study of emergency evacuation planning for nuclear power plants. The results indicate that the FGCCEM can generate optimized evacuation schemes to maximize the total number of evacuees within limited time. Meanwhile, evacuation schemes with decision makers' varied perferences can be obtained through post-optimization analysis. The information obtained in this study can provide an insight into the complex relationships in evacuation management systems. It can also provide valuable decision support for effective risk management in response to nuclear emergencies.
机译:紧急疏散是核事故最重要的风险管理措施之一。疏散管理系统包含各种复杂性,这给决策者带来了许多挑战。在研究中,提出了一种模糊梯度机会约束疏散模型(FGCCEM),以解决疏散管理和规划中的各种不确定性。 FGCCEM是通过将模糊梯度机会受限的编程合并到一个不精确的优化框架中而开发的。它能够平衡决策者的乐观情绪和悲观情绪,也可以反映以离散间隔表示的不确定性。所提出的模型应用于核电厂紧急疏散计划的假设案例研究。结果表明,FGCCEM可以生成优化的疏散方案,以在有限的时间内最大化撤离人员的总数。同时,可以通过后优化分析获得具有决策者不同选择的疏散方案。在这项研究中获得的信息可以提供对疏散管理系统中复杂关系的深入了解。它还可以为响应核紧急情况的有效风险管理提供有价值的决策支持。

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