On subsystems of a hybrid finite state machine

IF 0.7 Q4 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS New Mathematics and Natural Computation Pub Date : 2023-11-09 DOI:10.1142/s1793005724500364
S. Meenakshi, G. Muhiuddin, Y. B. Jun, B. Elavarasan
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Abstract

Humanity’s efforts are manifested in the creation of novel solutions to complex problems in diverse fields. Traditional mathematical methods fail to solve real-world problems due to their complexity. Researchers have come up with new mathematical theories like fuzzy set theory and rough set theory to help them figure out how to model the uncertainty in these fields. Soft set theory is a novel approach to real-world problem solving that does not require the membership function to be specified. This aids in the resolution of a wide range of issues, and significant progress has recently been made. After Jun et al. came up with a hybrid system that combined fuzzy and soft set concepts, many people came up with hybrid ideas in different algebraic structures. In this paper, we introduce the concepts of subsystem and strong subsystem of a hybrid finite state machine (HFSM) and investigate a portion of their significant properties. We also provide an example that shows that every subsystem does not need to be a strong subsystem. Additionally, we study the cyclic subsystem of HFSMs and also obtain their equivalent results and examples. Finally, we define the notions of homomorphism of subsystems and strong subsystems of HFSMs.
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混合有限状态机子系统的研究
人类的努力表现在为不同领域的复杂问题创造新的解决办法。传统的数学方法由于其复杂性而无法解决现实问题。研究人员提出了新的数学理论,如模糊集理论和粗糙集理论,以帮助他们弄清楚如何对这些领域的不确定性进行建模。软集理论是解决现实世界问题的一种新方法,它不需要指定隶属函数。这有助于解决一系列广泛的问题,最近已取得重大进展。在Jun等人提出了模糊和软集概念相结合的混合系统之后,很多人提出了不同代数结构的混合思想。本文引入了混合有限状态机的子系统和强子系统的概念,并研究了它们的部分重要性质。我们还提供了一个示例,表明每个子系统并不需要是一个强大的子系统。此外,我们还研究了hfsm的循环子系统,并得到了它们的等价结果和算例。最后,我们定义了hfsm子系统的同态和强子系统的概念。
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来源期刊
New Mathematics and Natural Computation
New Mathematics and Natural Computation MATHEMATICS, INTERDISCIPLINARY APPLICATIONS-
CiteScore
1.70
自引率
10.00%
发文量
47
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