Jameel Toqeer, Riaz Muhammad, Yaqoob Naveed, Aslam Muhammad
Department of Mathematics, University of the Punjab, Lahore, Pakistan.
Department of Mathematics and Statistics, Riphah International University, I-14 Islamabad 46000, Pakistan.
Heliyon. 2024 Apr 2;10(7):e28963. doi: 10.1016/j.heliyon.2024.e28963. eCollection 2024 Apr 15.
The concept of T-spherical fuzzy sets (T-SFSs) provides a robust optimization approach to deal with uncertainties in environmental concerns. The main objective of this paper is to introduce a hybrid approach for the power system reforms and advances of low-carbon technology to address environmental concerns as well as transition towards a more sustainable energy infrastructure. To meet these objectives, various aggregation operators (AOs) are developed named as T-spherical fuzzy Dubois-Prade (T-SFDP), T-spherical fuzzy interactive Dubois-Prade weighted average (T-SFIDPWA), T-spherical fuzzy interactive Dubois-Prade ordered weighted average (T-SFIDPOWA), T-spherical fuzzy interactive Dubois-Prade weighted geometric (T-SFIDPWG), and T-spherical fuzzy interactive Dubois-Prade ordered weighted geometric (T-SFIDPOWG). These AOs are integrated in the construction CRITIC-EDAS framework, facilitating a comprehensive assessment and ranking of proposals. This paper underscores the methodology's efficacy and precision through rigorous validation with CRITIC-MAUT, CRITIC-ARAS, CRITIC-EDAS, and CRITIC-MABAC analyses, showcasing its ability to discern and prioritize reform initiatives with exactitude. Beyond enhancing the comprehension of reform proposals, this hybrid approach establishes a benchmark for future evaluations, significantly contributing to the dynamic landscape of power system optimization. The methodology's clarity and precision offer decision-makers a valuable tool for the thorough assessment and prioritization of power system reforms initiatives, fostering sustainability and environmentally conscious advancements.
T-球形模糊集(T-SFSs)的概念为处理环境问题中的不确定性提供了一种稳健的优化方法。本文的主要目标是引入一种混合方法,用于电力系统改革和低碳技术进步,以解决环境问题,并向更可持续的能源基础设施转型。为实现这些目标,开发了各种聚合算子(AO),分别命名为T-球形模糊杜布瓦-普拉德(T-SFDP)、T-球形模糊交互式杜布瓦-普拉德加权平均(T-SFIDPWA)、T-球形模糊交互式杜布瓦-普拉德有序加权平均(T-SFIDPOWA)、T-球形模糊交互式杜布瓦-普拉德加权几何(T-SFIDPWG)和T-球形模糊交互式杜布瓦-普拉德有序加权几何(T-SFIDPOWG)。这些AO被集成到构建CRITIC-EDAS框架中,便于对提案进行全面评估和排序。本文通过与CRITIC-MAUT、CRITIC-ARAS、CRITIC-EDAS和CRITIC-MABAC分析进行严格验证,强调了该方法的有效性和精确性,展示了其准确识别改革举措并进行优先排序的能力。除了增强对改革提案的理解外,这种混合方法还为未来评估建立了一个基准,对电力系统优化的动态格局做出了重大贡献。该方法的清晰性和精确性为决策者提供了一个有价值的工具,用于对电力系统改革举措进行全面评估和优先排序,促进可持续性和注重环境的进步。