全球能源互联网(英文)2020,Vol.3Issue(1):31-43,13.DOI:10.14171/j.2096-5117.gei.2020.01.004
一种应用于跨洲电力互联工程影响因素识别与评判的多层次综合评价模型研究
A multi-level evaluation model for the recognition and assessment of impact factors associated with intercontinental power interconnection projects
摘要
Abstract
The construction of intercontinental power grid interconnection projects is key to realizing the vision of Global Energy Interconnection, which is to solve global energy problems in a clean and sustainable manner. These projects may be influenced by a few factors that are neither technological nor economic, such as political, social, and international factors. This paper thus presents a multi-level model for recognizing which factor from a compiled list of 14 would impact a particular intercontinental interconnection project and for assessing the degree of the factor's influence. In the first part of the model, the Analytic Hierarchy Process (AHP) method is used to recognize the project's most significant impact factors. Using the recognition results, the second part of the model can assess the degree of the factor's influence on the project based on ratings provided by experts. A comprehensive evaluation can thus be provided. As a case study, the proposed Saudi Arabia-Ethiopia power grid interconnection project connecting Asia and Africa was analyzed. Derived from a combination of multiple opinions from experts, evaluations from the model will be of direct benefit to decision-makers, investors, project implementers, and engineers, providing them with a deeper insight into the project.关键词
全球能源互联网/跨洲电力互联工程/影响因素/因素识别与评判模型Key words
Global energy interconnection/Intercontinental power grid interconnection project/Impact factor/Recognition and assessment model引用本文复制引用
Chen Chen,Caihao Liang,Yuanbing Zhou,Chen Wang,Jing Lu,Fei Xu..一种应用于跨洲电力互联工程影响因素识别与评判的多层次综合评价模型研究[J].全球能源互联网(英文),2020,3(1):31-43,13.基金项目
This work was supported by the State Grid Science and Technology Project "Research on Method and Evaluation Principle for the Cross-Continent Power Transmission Planning Scheme" (SGTYHT/16-JS-198). (SGTYHT/16-JS-198)