4.5 Article

Economic Feasibility Analysis for Renewable Energy Project Using an Integrated TFN-AHP-DEA Approach on the Basis of Consumer Utility

期刊

ENERGIES
卷 10, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/en10122089

关键词

renewable energy; economic evaluation; triangular fuzzy number (TFN); analytic hierarchy process (AHP); data envelopment analysis (DEA); computer-based intelligent interface (CBII)

资金

  1. Humanities Social and Sciences Research Funds of Education Ministry [15XJC630001]
  2. Key Funds of Sichuan Social Science Research Institution System Science and Enterprise Development Research [Xq15B09]
  3. Youth Funds of Sichuan Provincial Education Department [14ZB0014]

向作者/读者索取更多资源

A renewable energy (RE) project has been brought into focus in recent years. Although there is quite a lot of research to assist investors in assessing the economic feasibility of the project, because of the lack of consideration of consumer utility, the existing approaches may still cause a biased result. In order to promote further development, this study focuses on the economic feasibility analysis of the RE project on the basis of consumer utility in the whole life cycle. Therefore, an integrated approach is proposed, which consists of triangular fuzzy numbers (TFNs), an analytic hierarchy process (AHP) and data envelopment analysis (DEA). The first step is to determine the comprehensive cost index weights of DEA by TFN-AHP. Secondly, to solve the problem, the first DEA model, which is proposed by A. Charnes, W. W. Cooper and E. Rhodes ((CR)-R-2), is established to calculate the DEA effectiveness. Then, the third task involves designing a computer-based intelligent interface (CBII) to simplify realistic application and ensure performance efficiency. Finally, a solar water heater case study is demonstrated to validate the effectiveness of the entire method's system. The study shows that this could make investors' lives easier by using the CBII scientifically, reasonably and conveniently. Moreover, the research results could be easily extended to more complex real-world applications.

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