Component diagnosability in terms of component connectivity of hypercube-based compound networks
ID:73 View Protection:ATTENDEE Updated Time:2021-12-06 19:15:59 Hits:544 Oral Presentation

Start Time:2021-12-12 11:00(Asia/Shanghai)

Duration:15min

Session:S1 论文报告会场1 » S1.3Session 3: 热点领域安全

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Abstract
Enhancing the invulnerability of multiprocessor systems against malicious attacks has been regarded as one of the important issues in network science and big data era. Thus, in order to firmly characterize the robustness of systems, several variants of classic connectivity have been proposed so far. The component connectivity is a significant metric in evaluating the robustness and fault tolerability of interconnection network. For an interconnection network G and a positive integer h, the (h + 1)-component connectivity of G, denoted cκh+1(G), is the cardinality of a minimum vertex cut F such that G-F has at least h+1 connected components. Based on component connectivity, component diagnosability has been proposed to measure the self-diagnosis capability of multiprocessor systems. In this paper, we suggest some characterizations of the (h + 1)-component connectivity of a class of regular networks under some restrictions. Furthermore, we establish the relationship between component connectivity and component diagnosability of one class of networks. As by-products, we present the (h + 1)-component diagnosability of the state-of-the-art compound networks based on hypercube, such as bicube network, generalized exchanged hypercube, hierarchical hypercube, half-hypercube, and so on.
Keywords
multiprocessor systems; robustness; component connectivity; component diagnosability
Speaker
ZhouShuming
Fujian Normal University

Submission Author
LiuJiafei Fujian Normal University
ZhouShuming Fujian Normal University
WangDajin Montclair State University
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Important Date
  • Conference Date

    Dec 11

    2021

    to

    Dec 12

    2021

  • Aug 18 2021

    Registration deadline

Sponsored By
中国计算机学会
Organized By
中国计算机学会容错计算专业委员会
同济大学软件学院
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