Quaternion Intuitionistic Fuzzy Fusion Process: Applications to the Classification of Photo-Voltic-Solar-Power Plants

IF 3.6 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Bhagawati Prasad Joshi, Akhilesh Singh, B. K. Singh
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引用次数: 0

Abstract

Intuitionistic fuzzy sets (IFSs) are more useful than FSs for modelling uncertain data of realistic problems by allowing the hesitancy degree. Due to which different extensions of IFSs are available with different domains and objectives. One of the important generalization of IFS is quaternion IFS (QIFS) based on the concept of quaternion numbers. Despite the significance of QIFS, there’s been a notable gap in exploring the aggregation of QIFS information which is the motivation of the presented study. Consequently, this manuscript effort to established some aggregation operators under QIFS environment. Their important properties are also analysed. Firstly, a new novel order relation of QIF numbers (QIFNs) is introduced to address limitations in existing model. Secondly, a sequence of aggregation operators termed as “the QIFA, the QIFG, the QIFOA and the QIFOG” are proposed under QIFS environment. Then, these approaches are applied to the classification of photo-voltic (PV) solar power plants. The obtained results are compared with some other existing models in details to show its supremacy. Finally, the conclusions of the presented study are listed.

Abstract Image

四元数直觉模糊融合过程:光电-太阳能发电厂分类应用
直觉模糊集(IFS)允许犹豫程度,因此比 FS 更适用于模拟现实问题中的不确定数据。因此,针对不同的领域和目标,IFS 有不同的扩展。基于四元数概念的四元 IFS(QIFS)是 IFS 的重要扩展之一。尽管 QIFS 意义重大,但在探索 QIFS 信息聚合方面却存在明显差距,这也是本研究的动机所在。因此,本手稿致力于在 QIFS 环境下建立一些聚合算子。同时还分析了它们的重要特性。首先,针对现有模型的局限性,引入了一种新颖的 QIF 号码(QIFN)顺序关系。其次,在 QIFS 环境下提出了一系列聚合算子,分别称为 "QIFA、QIFG、QIFOA 和 QIFOG"。然后,将这些方法应用于光电(PV)太阳能发电厂的分类。所得结果与其他一些现有模型进行了详细比较,以显示其优越性。最后,列出了本研究的结论。
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来源期刊
International Journal of Fuzzy Systems
International Journal of Fuzzy Systems 工程技术-计算机:人工智能
CiteScore
7.80
自引率
9.30%
发文量
188
审稿时长
16 months
期刊介绍: The International Journal of Fuzzy Systems (IJFS) is an official journal of Taiwan Fuzzy Systems Association (TFSA) and is published semi-quarterly. IJFS will consider high quality papers that deal with the theory, design, and application of fuzzy systems, soft computing systems, grey systems, and extension theory systems ranging from hardware to software. Survey and expository submissions are also welcome.
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