Early stage multi-criteria decision support system for recommending slope repair methods

IF 1.7 3区 工程技术 Q3 ENGINEERING, CIVIL
I. Adhikari, A. Baral, E. Zahed, B. Abediniangerabi, M. Shahandashti
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引用次数: 6

Abstract

ABSTRACT The selection of appropriate slope repair methods for the restoration of failed slopes is challenging at the early-stage of the decision-making process due to the limited available geotechnical information. At this early-stage, the limited experience of a few maintenance personnel often dominates the selection of slope repair methods to restore failed slopes. Hence, some potential repair methods that may have better performance for the given slope conditions, could be overlooked. The objective of this study is to develop an early-stage multi-criteria decision-support system to rank and recommend slope repair methods for the restoration of failed slopes based on collective experience and knowledge of subject matter experts. This system evaluates potential slope repair methods based on several selection criteria, such as the impact on traffic, the service life of repair methods, the rapidity of repair to recommend the most appropriate repair methods for the slope restoration. A survey of subject matter experts was conducted to identify the possible slope repair methods. The importance of selection criteria was calculated using the entropy method. The resulting importance of criteria was then used by the technique for order preference by the similarity of ideal solution (TOPSIS) to rank and recommend potential slope repair methods.
边坡修复方法推荐的早期多准则决策支持系统
由于可用的岩土工程信息有限,在决策过程的早期阶段,选择适当的边坡修复方法来恢复破坏的边坡是具有挑战性的。在这个早期阶段,少数维修人员的有限经验往往主导了边坡修复方法的选择,以恢复破坏的边坡。因此,一些潜在的修复方法可能对给定的边坡条件有更好的性能,可能被忽视。本研究的目的是开发一个早期的多标准决策支持系统,根据主题专家的集体经验和知识,对边坡修复方法进行排序和推荐。该系统根据对交通的影响、修复方法的使用寿命、修复的快速性等几个选择标准,对潜在的边坡修复方法进行评估,推荐最适合边坡修复的修复方法。对主题专家进行了调查,以确定可能的边坡修复方法。采用熵值法计算选择准则的重要度。然后,通过理想解决方案的相似性(TOPSIS)对潜在的边坡修复方法进行排序和推荐,从而使用标准的重要性进行排序偏好技术。
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来源期刊
Civil Engineering and Environmental Systems
Civil Engineering and Environmental Systems 工程技术-工程:土木
CiteScore
3.30
自引率
16.70%
发文量
10
审稿时长
>12 weeks
期刊介绍: Civil Engineering and Environmental Systems is devoted to the advancement of systems thinking and systems techniques throughout systems engineering, environmental engineering decision-making, and engineering management. We do this by publishing the practical applications and developments of "hard" and "soft" systems techniques and thinking. Submissions that allow for better analysis of civil engineering and environmental systems might look at: -Civil Engineering optimization -Risk assessment in engineering -Civil engineering decision analysis -System identification in engineering -Civil engineering numerical simulation -Uncertainty modelling in engineering -Qualitative modelling of complex engineering systems
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