A multi-criteria decision-making approach for pressurized water reactor based on hesitant fuzzy-improved cumulative prospect theory and 2-additive fuzzy measure

IF 10.4 1区 计算机科学 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Xuanyu Wu , Yixiong Feng , Shanhe Lou , Zhiwu Li , Bingtao Hu , Zhaoxi Hong , Hengyuan Si , Jianrong Tan
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引用次数: 0

Abstract

As one of the world's largest energy consumers, China has paid much attention to the development of non-fossil energy sources. The nuclear power is regarded as the top priority for development due to its remarkable ecological and economic advantages. Given the large investment, long lifecycle, and rigorous quality control, the conceptual design plays a critical role in the pressurized water reactor development. Multitudinous design alternatives are presented at this stage and it is essential to develop an advanced evaluation approach. Hence, this work proposes a multi-criteria decision-making approach for pressurized water reactor based on hesitant fuzzy-improved cumulative prospect theory and 2-additive fuzzy measure. Firstly, considering the inherent uncertainty and cognitive biases of nuclear power experts, cumulative prospect values are calculated for design alternatives by adopting dual prospect reference points and two-tuple entropy measure under a hesitant fuzzy environment. Secondly, a linear programming model based on bidirectional projection measures is constructed to eliminate the discordance between the independent criteria assumption and interdependent evaluation information. This model helps to identify optimal 2-additive fuzzy measures, which serve as the basis for determining the Shapley importance and interaction indices of evaluation criteria. Then, taking Shapley interaction indices modification into account, a quadratic programming model based on the global criterion method is built. Finally, 2-additive Choquet integral-based TOPSIS method is proposed to select the optimal design alternative. A case study on the essential service water system is implemented to demonstrate the reliability and superiority of the proposed approach.

基于犹豫模糊改进累积前景理论和 2-附加模糊度量的压水反应堆多标准决策方法
作为世界上最大的能源消费国之一,中国十分重视非化石能源的发展。核电因其显著的生态和经济优势被视为发展的重中之重。由于投资大、生命周期长、质量控制严格,概念设计在压水堆的发展中起着至关重要的作用。在这一阶段会出现多种设计方案,因此必须开发一种先进的评估方法。因此,本研究提出了一种基于犹豫模糊改进累积前景理论和 2 附加模糊度量的压水堆多标准决策方法。首先,考虑到核电专家固有的不确定性和认知偏差,在犹豫模糊环境下采用双前景参考点和二元熵度量计算设计备选方案的累积前景值。其次,构建了基于双向预测度量的线性规划模型,以消除独立标准假设与相互依存的评价信息之间的不协调。该模型有助于确定最优的二相加模糊度量,并以此为基础确定评价标准的 Shapley 重要性和交互指数。然后,考虑到 Shapley 交互指数的修改,建立了一个基于全局准则法的二次编程模型。最后,提出了基于 2 附加 Choquet 积分的 TOPSIS 方法来选择最优设计方案。通过对基本服务供水系统的案例研究,证明了所提方法的可靠性和优越性。
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来源期刊
Journal of Industrial Information Integration
Journal of Industrial Information Integration Decision Sciences-Information Systems and Management
CiteScore
22.30
自引率
13.40%
发文量
100
期刊介绍: The Journal of Industrial Information Integration focuses on the industry's transition towards industrial integration and informatization, covering not only hardware and software but also information integration. It serves as a platform for promoting advances in industrial information integration, addressing challenges, issues, and solutions in an interdisciplinary forum for researchers, practitioners, and policy makers. The Journal of Industrial Information Integration welcomes papers on foundational, technical, and practical aspects of industrial information integration, emphasizing the complex and cross-disciplinary topics that arise in industrial integration. Techniques from mathematical science, computer science, computer engineering, electrical and electronic engineering, manufacturing engineering, and engineering management are crucial in this context.
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