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Circular q-rung orthopair fuzzy modeling using Schweizer-Sklar weighted aggregation for water purification strategy
Jawad Ali1, Ahmad N Al-Kenani2, Ioan-Lucian Popa3,4
1Institute of Numerical Sciences, Kohat University of Science and Technology, Kohat, KPK, Pakistan. jawadali@math.qau.edu.pk.
Abstract:
Selecting an optimal water purification strategy presents a complex multi-criteria decision-making problem due to inherent uncertainty, imprecise information, and conflicting evaluation criteria. Traditional fuzzy set-based approaches often lack the flexibility to accurately represent such uncertainty. To address these limitations, this study proposes a novel decision-support framework based on circular q-rung orthopair fuzzy ([Formula: see text]-ROF) set, which extend conventional q-rung orthopair fuzzy sets by incorporating a circular representation to model uncertainty more expressively. A key contribution of this work is the development of an improved score function that overcomes the limited discriminative capability of existing formulations. Moreover, Schweizer-Sklar operational laws are introduced within the [Formula: see text]-ROF environment, and their fundamental algebraic properties are rigorously examined. Two novel aggregation operators-the [Formula: see text]-ROF Schweizer-Sklar weighted average and geometric operators-are constructed and validated to enhance flexibility and accuracy in aggregating expert opinions. To further improve decision reliability, the well-established multi-objective optimization by ratio analysis plus full multiplicative form (MULTIMOORA) method is extended under the [Formula: see text]-ROF framework. This integrated model simultaneously considers evaluation scores, ranking stability, and consistency across multiple ranking strategies, addressing key limitations of prior dominance-based integration techniques. The practicality and effectiveness of the proposed approach are demonstrated through a real-world case study focused on selecting the optimal commercial water purification method, with comparative analysis against existing decision-making techniques.
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