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Enhanced control techniques for automated vehicles using q*ε-rung orthopair neutrosophic continuous functions
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DOI:10.1080/27684830.2024.2448378.png)
Abstract
En 中文
q*-rung orthopair neutrosophic topology (q*-RONT) and q*-rung orthopair neutrosophic point (q*-RONP) are two novel fuzzy topology ideas presented in this work. By adding an error-bound & varepsilon; to define q*(epsilon)-RON continuity, these ideas expand on conventional fuzzy topology and provide a more adaptable framework for evaluating functions between q*-RONT spaces. Deeper understanding of the behavior of functions, sequences, and limits in these spaces is provided by the definition of the neighborhood structure for a q*-RONP in a q*-RONT spaces. These results have important applications in control systems, especially when it comes to maintaining stability and flexibility in the face of small variations in real-world circumstances, the study demonstrates the resilience and dependability of q*-RON continuity, highlighting its capacity to handle subtle changes and improve control strategies. This paper provides a more thorough and friendly approach to continuity by expanding on preexisting theories, with applications for automated systems and other dynamic contexts.
Keywords:
q*-rung orthopair neutrosophic set
q*-rung orthopair neutrosophic topological space
q*-rung orthopair neutrosophic point
q*-rung orthopair neutrosophic continuous and q*(epsilon)-rung orthopair neutrosophic continuous
Journal
R
IF:
1.1
Papers:
72
Citations:
0
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