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Intuitionistic Fuzzy Real Time Multigraphs for Communication Networks: A Theoretical Model

机译:通信网络直观的模糊实时多重素:理论模型

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Many problems of computer science, communication network, transportation systems, etc. can not be modeled into graphs, but into multigraphs only, and then can be easily solved. Nowadays, the networks are expanding very fast in huge volumes in terms of their nodes and links/arcs. For a given alive network, in many situations, its complete topology may not be always available to the communication systems at a given point of time because of the reason that few or many of its links/arcs may be temporarily disable owing to damage or external attack or blockage upon them, and of course they are under repair at that point of time. Besides that, in most of the cases the cost parameters corresponding to its links are not crisp numbers, rather intuitionistic fuzzy numbers (or fuzzy numbers). Thus at any real time instant, the complete multigraph is not available but a submutigraph of it is available to the system for executing its communication or packets transfer. There is no mathematical model available in the existing literature to represent such type of real time network. In this paper the authors propose a mathematical model for such types of multigraphs be called by 'Real Time Multigraphs' (RT-multigraphs) in which all real time information (being updated every q quantum of time) are incorporated so that the communication/transportation system can be made very efficiently with optimal results. It is a theoretical work, a kind of intuitionistic fuzzy mathematical model being the most generalized form of the crisp multigraphs.
机译:计算机科学,通信网络,运输系统等的许多问题都无法建模到图形中,但仅进入多层物,然后可以很容易地解决。如今,网络在其节点和链路/弧方面的巨大卷中扩展得非常快。对于给定的所有网络,在许多情况下,由于损坏或外部可能暂时禁用,因此在许多情况下,在许多情况下,其完全拓扑可能不会始终可用于通信系统。由于损坏或外部,这几个或许多链路/弧可能暂时禁用攻击或阻止他们,当然他们在那段时间内正在修复。除此之外,在大多数情况下,对应于其链路的成本参数不是酥脆的数字,而不是直观的模糊数(或模糊数)。因此,在任何实时瞬间,完整的Multigaph不可用,但是它的子地形图片可用于执行其通信或数据包传输。现有文献中没有可用数学模型来代表这种类型的实时网络。在本文中,作者提出了一种由“实时多重素的”(RT-多重重子)调用的这种类型的多层物的数学模型,其中包括所有实时信息(每次更新一次),使得通信/运输系统可以通过最佳结果非常有效地进行。它是一个理论上的工作,一种直觉模糊数学模型是最广泛的脆复杂形式。

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