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Fuzzy edge connectivity and fuzzy local edge connectivity with applications to communication networks

机译:模糊边缘连接和模糊本地边缘连接与通信网络的应用

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The authors (Mathew and Sunitha (2010) [9]) introduced the concept of fuzzy arc cuts for improving the definition of the socalled cut-sets proposed by Yeh and Bang, both generalizing edge cuts from classic graph theory to the fuzzy settings. They argued that non-strong edges need not be considered in a fuzzy arc cut as such edges would not change the strength of connectedness between any vertices. However, we give a counterexample in the paper, which illustrates that this viewpoint may contain some flaws. Based on this observation, a more general definition of fuzzy arc cuts (called fuzzy edge cuts) is given. Moreover, we define fuzzy edge connectivity with two parameters, this definition allows us to talk about edge connectivity more precisely. The concepts of fuzzy local edge cuts and fuzzy local edge connectivity are also introduced. We investigate the relations between fuzzy edge cuts and fuzzy local edge cuts. A characterization for the weight of a minimal fuzzy local edge cut is obtained. Finally, we provide some algorithms to compute fuzzy edge connectivity and fuzzy local edge connectivity of special graphs. Besides, applications of two connectivity parameters in communication networks are presented. (c) 2020 Elsevier B.V. All rights reserved.
机译:作者(Mathew和Sunitha(2010)[9])介绍了模糊弧切割的概念,用于改善YEH和BANG提出的考卡剪辑的定义,概括边缘从经典图理论切割到模糊设置。他们认为,由于这种边缘不会改变任何顶点之间的连接强度,因此不需要在模糊弧切割中考虑非强力边缘。但是,我们在论文中给出了一个反例,说明这个观点可能包含一些缺陷。基于该观察,给出了模糊弧切割(称为模糊边缘切口)的更一般定义。此外,我们使用两个参数定义模糊边缘连接,此定义允许我们更准确地讨论边缘连接。还介绍了模糊局部边缘切割和模糊局部边缘连接的概念。我们调查模糊边缘切割与模糊局部边缘切割之间的关系。获得了最小模糊局部边缘切割的重量的表征。最后,我们提供了一些算法来计算特殊图的模糊边缘连接和模糊局部边缘连接。此外,介绍了两个连接参数在通信网络中的应用。 (c)2020 Elsevier B.v.保留所有权利。

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