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Article type: Research Article
Authors: Jiang, Pan
Affiliations: Department of Civil Engineering, Hebei University of Water Resources and Electric Engineering, Cangzhou, Hebei, China | E-mail: jiangpan@hbwe.edu.cn
Correspondence: [*] Corresponding author: Department of Civil Engineering, Hebei University of Water Resources and Electric Engineering, Cangzhou, Hebei, China. E-mail: jiangpan@hbwe.edu.cn.
Abstract: The significant acceleration of China’s urbanization process has greatly promoted economic development. At the same time, the massive construction of urban buildings has also caused many problems such as environmental pollution and increased energy consumption. Therefore, in architectural design, it is particularly important to pay attention to the sustainable development of the environment, handle the relationship between good people and nature under the guidance of the concept of green development, and focus on the recycling of resources. Focusing on resource utilization in architectural design and based on certain planning can better control the construction process of urban buildings, save energy consumption, reduce construction costs, and contribute to the green development of cities. The comprehensive evaluation of energy conservation and emission reduction of construction projects is a classical MAGDM problems. Recently, the Logarithmic TODIM (LogTODIM) method has been employed to cope with MAGDM issues. The single-valued neutrosophic sets (SVNSs) are used as a tool for characterizing uncertain information during the comprehensive evaluation of energy conservation and emission reduction of construction projects. In this paper, the single-valued neutrosophic number Logarithmic TODIM (SVNN-LogTODIM) method is built to solve the MAGDM under SVNSs. In the end, a numerical case study for comprehensive evaluation of energy conservation and emission reduction of construction projects is given to validate the proposed method.
Keywords: Multiple attribute group decision making (MAGDM), single-valued neutrosophic sets (SVNSs), information entropy, logarithmic TODIM, energy conservation and emission reduction
DOI: 10.3233/KES-230076
Journal: International Journal of Knowledge-based and Intelligent Engineering Systems, vol. 28, no. 1, pp. 149-161, 2024
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