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基于灰色-DEMATEL-ISM 的充分资源下极短建设工期影响因素研究。

Research on the factors of extremely short construction period under the sufficient resources based on Grey-DEMATEL-ISM.

机构信息

College of Transportation Engineering, Changsha University of Science and Technology, Changsha, China.

College of Civil and Transportation Engineering, Shenzhen University, Shenzhen, China.

出版信息

PLoS One. 2022 Mar 10;17(3):e0265087. doi: 10.1371/journal.pone.0265087. eCollection 2022.

Abstract

Under the condition of sufficient resources, there are many factors affecting the realization of extremely short construction period of engineering construction projects. Based on literature review and questionnaire survey, this paper firstly selected 17 influencing factors from the five dimensions of design, management, technology, policy and environment. And the factor analytic hierarchy process model was established based on Grey-DEMATEL-ISM. The model introduced the improved grey system theory and combined decision-making trial and evaluation laboratory (DEMATEL) with interpretative structural modeling method (ISM). In addition, the model can not only identify the critical factors in the system, but also present the internal logical relationship between the influencing factors through the multi-level hierarchical structure diagram. Finally, through the analysis of the influencing factors of extremely short construction period under the sufficient resources, it defined that the key factor is the natural environment and second is the structure type. The methodology implemented in this paper helps decision makers and managers of construction projects to understand the interrelationship and degree of influence among factors affecting the duration under the condition of sufficient resources, to effectively grasp key factors, and to effectively achieve project success.

摘要

在资源充足的条件下,影响工程建设项目极短建设周期实现的因素有很多。本文首先从设计、管理、技术、政策和环境五个维度选取了 17 个影响因素,基于文献回顾和问卷调查,利用灰色-决策试验和评价实验室(DEMATEL)-解释结构模型(ISM)方法构建了影响因素分析层次模型。该模型引入了改进的灰色系统理论,将决策试验和评价实验室(DEMATEL)与解释结构模型(ISM)方法相结合。此外,该模型不仅可以识别系统中的关键因素,还可以通过多层次层次结构图呈现影响因素之间的内在逻辑关系。最后,通过对资源充足条件下极短建设周期的影响因素进行分析,定义关键因素是自然环境,其次是结构类型。本文所采用的方法有助于建设项目的决策者和管理者了解在资源充足条件下影响工期的因素之间的相互关系和影响程度,有效把握关键因素,从而有效地实现项目成功。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d226/8912191/193d5c5a7644/pone.0265087.g001.jpg

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