Some new approaches to neighborhoods via graphs
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Date
2023
Authors
Aysegül Çaksu Güler
Esra Dalan Yildirim
Oya Bedre Özbakır
Journal Title
Journal ISSN
Volume Title
Publisher
Springer Science and Business Media Deutschland GmbH
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
This paper aims to increase the accuracy measure of the subgraph of a graph and generate new nano topologies on the power set of vertices and edges of a graph. Firstly we introduce E<inf>j</inf>-neighborhoods and C<inf>j</inf>-neighborhoods which depend on vertices and edges of a simple directed graph by using j-neighborhoods for j∈ { out in ∩ ∪ }. Then we apply these neighborhoods to present the concepts of E<inf>j</inf>-approximations and C<inf>j</inf>-approximations. We investigate their main properties and relationships among them. Besides we define the accuracy measures of a subgraph with the help of these approximations and show that C<inf>j</inf>-accuracy measures are the highest when we compare these accuracy measures with the previous one. Furthermore we generate new nano topologies via obtained approximations and illustrate that these topologies may not be comparable. Finally we give an application in physics to elucidate the current approximations are more general. Throughout the paper we summarize all comparisons with tables and give counterexamples to support the study. © 2023 Elsevier B.V. All rights reserved.
Description
Keywords
Graph Theory, Nano Topology, Rough Set, Rough Set Theory, 'current, Accuracy Measures, Nano Topology, Neighbourhood, New Approaches, Power Set, Property, Rough Set, Simple++, Subgraphs, Directed Graphs, Rough set theory, 'current, Accuracy measures, Nano topology, Neighbourhood, New approaches, Power set, Property, Rough set, Simple++, Subgraphs, Directed graphs, New approaches, Rough set theory, Simple++, Accuracy measures, Property, Power set, Graph theory, 'current, Rough set, Subgraphs, Nano topology, Neighbourhood, Directed graphs
Fields of Science
02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering
Citation
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OpenCitations Citation Count
1
Source
Soft Computing
Volume
27
Issue
Start Page
1303
End Page
1315
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Scopus : 2
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