[1,n]-因子和{K2,Ci≥4}-因子的紧密韧性、孤立韧性和结合数界限

IF 0.5 Q4 COMPUTER SCIENCE, THEORY & METHODS
Xiao Xu, Zhuoma Gao, Lei Meng, Qin Tong
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引用次数: 0

摘要

设[公式:见文本]为整数。如果所有的[公式:见文本]都是[公式:见文本],则图[公式:见文本]的[公式:见文本]因子是一个生成子图[公式:见文本],而[公式:见文本]因子是一个子图,其每个组件要么是[公式:见文本],要么是[公式:见文本]。本文给出了图的紧韧性、孤立韧性和结合数的下界,以保证图的[公式:见文]因子和[公式:见文]因子的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tight Toughness, Isolated Toughness and Binding Number Bounds for the [1,n]-Factors and the {K2,Ci≥4}-Factors
Let [Formula: see text] be an integer. The [Formula: see text]-factor of a graph [Formula: see text] is a spanning subgraph [Formula: see text] if [Formula: see text] for all [Formula: see text], and the [Formula: see text]-factor is a subgraph whose each component is either [Formula: see text] or [Formula: see text]. In this paper, we give the lower bounds with regard to tight toughness, isolated toughness and binding number to guarantee the existence of the [Formula: see text]-factors and [Formula: see text]-factors for a graph.
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来源期刊
JOURNAL OF INTERCONNECTION NETWORKS
JOURNAL OF INTERCONNECTION NETWORKS COMPUTER SCIENCE, THEORY & METHODS-
自引率
14.30%
发文量
121
期刊介绍: The Journal of Interconnection Networks (JOIN) is an international scientific journal dedicated to advancing the state-of-the-art of interconnection networks. The journal addresses all aspects of interconnection networks including their theory, analysis, design, implementation and application, and corresponding issues of communication, computing and function arising from (or applied to) a variety of multifaceted networks. Interconnection problems occur at different levels in the hardware and software design of communicating entities in integrated circuits, multiprocessors, multicomputers, and communication networks as diverse as telephone systems, cable network systems, computer networks, mobile communication networks, satellite network systems, the Internet and biological systems.
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