Renewable energy selection based on a new entropy and dissimilarity measure on an interval-valued neutrosophic set

Author:

Chou ShuoYan1,Duong Truong Thi Thuy2,Thao Nguyen Xuan13

Affiliation:

1. Department of Industrial Management, National Taiwan University of Science and Technology, Taipei, Taiwan

2. Vietnam Banking Academy, Chua Boc, Ha Noi

3. Faculty of Information Technology –Vietnam National University of Agriculture, Trau Quy, Gia Lam, Ha Noi

Abstract

Energy plays a central part in economic development, yet alongside fossil fuels bring vast environmental impact. In recent years, renewable energy has gradually become a viable source for clean energy to alleviate and decouple with a negative connotation. Different types of renewable energy are not without trade-offs beyond costs and performance. Multiple-criteria decision-making (MCDM) has become one of the most prominent tools in making decisions with multiple conflicting criteria existing in many complex real-world problems. Information obtained for decision making may be ambiguous or uncertain. Neutrosophic is an extension of fuzzy set types with three membership functions: truth membership function, falsity membership function and indeterminacy membership function. It is a useful tool when dealing with uncertainty issues. Entropy measures the uncertainty of information under neutrosophic circumstances which can be used to identify the weights of criteria in MCDM model. Meanwhile, the dissimilarity measure is useful in dealing with the ranking of alternatives in term of distance. This article proposes to build a new entropy and dissimilarity measure as well as to construct a novel MCDM model based on them to improve the inclusiveness of the perspectives for decision making. In this paper, we also give out a case study of using this model through the process of a renewable energy selection scenario in Taiwan performed and assessed.

Publisher

IOS Press

Subject

Artificial Intelligence,General Engineering,Statistics and Probability

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