A Multidimensional Adaptive Assessment Model for Innovative Technologies in New-Type Power System

Wei Fan, Dongming Liu, Zhe Yang, Yu Liu, Cheng Yang, Qingbin Zeng
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Abstract

With the continuous development of new-type power systems, all kinds of innovative technologies have come into being. However, due to the scattered development of various technologies and the lack of co-ordinated planning, it makes some of the innovative technologies ignore the optimisation of investment in order to achieve the expected construction goals. Therefore, in order to guide grid enterprises and promote technology application and planning, the construction conditions of innovative technologies for new power systems are analysed and a three-dimensional spatial three-dimensional evaluation system is established, taking into account the spatial and temporal resources required for technology construction. The continuous interval ordered weighted average operator is used to improve the subjective and objective comprehensive assignment method, reducing the subjectivity of the evaluation and improving the compatibility of the evaluation system. Finally, the fuzzy comprehensive evaluation method is used to determine the affiliation degree of each index, and then the evaluation level of the new energy network innovation technology is obtained. The results show that the proposed method can identify the adaptability of innovative technologies to different time and space and the suitability of different time and space for a certain technology application in both directions.
新型电力系统创新技术的多维自适应评估模型
随着新型电力系统的不断发展,各种创新技术层出不穷。但由于各种技术发展分散,缺乏统筹规划,使得部分创新技术忽视了投资的优化,无法实现预期的建设目标。因此,为了引导电网企业,促进技术应用与规划,结合技术建设所需的时空资源,分析了新电力系统创新技术的建设条件,建立了三维空间立体评价体系。利用连续区间有序加权平均算子改进了主客观综合赋值法,降低了评价的主观性,提高了评价体系的兼容性。最后,利用模糊综合评价法确定各指标的隶属度,进而得到新能源网络创新技术的评价等级。结果表明,所提出的方法可以双向识别创新技术对不同时空的适应性,以及不同时空对某项技术应用的适宜性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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