Railway Transportation Scheme Selection Based a CODAS-COPRAS Method in Triangular Dense Fuzzy Linguistic Term Lock Environment

IF 3.6 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Jianping Fan, Yali Yuan, Meiqin Wu
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引用次数: 0

Abstract

In the environment of global warming, it is very important to choose rail transport solutions with the lowest possible CO2 emissions, taking into account economic, technical and safety factors. As an important part of the modern transportation system, railway transportation appears in most transportation scenarios. Therefore, choosing an eco-friendly railway transport selection scheme is conducive to further reducing pollution emissions and preventing the further deterioration of the ecological environment. Triangular Dense Fuzzy Linguistic Term Lock Set (TDFLTS) is a tool for describing uncertain information. CODAS-COPRAS is a method to solve the multi-attribute group decision-making problem. This paper first introduces TDFLTS to describe uncertain information. Secondly, the distance measure and similarity measure between TDFLTS are proposed. Then, MEREC and DEMATEL methods are used to obtain attribute weights. Finally, CODAS-COPRAS method is used to solve the multi-attribute decision-making problem under TDFLTS environment, and it is applied to the research of railway transportation scheme selection.

Abstract Image

三角密集模糊语言术语锁定环境下基于 CODAS-COPRAS 方法的铁路运输方案选择
在全球变暖的大环境下,考虑到经济、技术和安全因素,选择二氧化碳排放量尽可能低的铁路运输解决方案非常重要。作为现代运输系统的重要组成部分,铁路运输出现在大多数运输方案中。因此,选择生态友好型铁路运输方案有利于进一步减少污染排放,防止生态环境进一步恶化。三角密集模糊语言术语锁定集(TDFLTS)是一种描述不确定信息的工具。CODAS-COPRAS 是一种解决多属性群体决策问题的方法。本文首先介绍了用于描述不确定信息的 TDFLTS。其次,提出了 TDFLTS 之间的距离度量和相似度量。然后,使用 MEREC 和 DEMATEL 方法获得属性权重。最后,采用 CODAS-COPRAS 方法求解 TDFLTS 环境下的多属性决策问题,并将其应用于铁路运输方案选择的研究。
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来源期刊
International Journal of Fuzzy Systems
International Journal of Fuzzy Systems 工程技术-计算机:人工智能
CiteScore
7.80
自引率
9.30%
发文量
188
审稿时长
16 months
期刊介绍: The International Journal of Fuzzy Systems (IJFS) is an official journal of Taiwan Fuzzy Systems Association (TFSA) and is published semi-quarterly. IJFS will consider high quality papers that deal with the theory, design, and application of fuzzy systems, soft computing systems, grey systems, and extension theory systems ranging from hardware to software. Survey and expository submissions are also welcome.
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