G-good-neighbor diagnosability under the modified comparison model for multiprocessor systems

Diagnosing faults in multiprocessor systems has long been significant due to its performance impact and its blend of Graph Theory and Computer Science concepts. In 2012, Peng et al. introduced the g-good-neighbor diagnosability, ensuring every fault-free node has at least g fault-free neighbors. Thi...

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Published inTheoretical computer science Vol. 1028; p. 115027
Main Authors Wang, Mu-Jiang-Shan, Xiang, Dong, Hsieh, Sun-Yuan
Format Journal Article
LanguageEnglish
Published Elsevier B.V 28.02.2025
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Abstract Diagnosing faults in multiprocessor systems has long been significant due to its performance impact and its blend of Graph Theory and Computer Science concepts. In 2012, Peng et al. introduced the g-good-neighbor diagnosability, ensuring every fault-free node has at least g fault-free neighbors. This concept, gaining traction over the years, has led to extensive research on the connectivity and diagnosability of many prominent multiprocessor systems. In this paper, we introduce a novel comparison model, the MC model, for multiprocessor systems. This model integrates the strengths of both the PMC and MM⁎ models, optimizing computing power and time. We present an algorithm detailing the MC model's operations and establish the conditions for a multiprocessor system G to be g-good-neighbor t-diagnosable under the MC model. A general method to determine a G's g-good-neighbor diagnosability under the MC model is also provided. We further highlight the MC model's advantages over the PMC and MM (including MM⁎) models. Lastly, we apply the MC model to Hypercube, determining its g-good-neighbor diagnosability.
AbstractList Diagnosing faults in multiprocessor systems has long been significant due to its performance impact and its blend of Graph Theory and Computer Science concepts. In 2012, Peng et al. introduced the g-good-neighbor diagnosability, ensuring every fault-free node has at least g fault-free neighbors. This concept, gaining traction over the years, has led to extensive research on the connectivity and diagnosability of many prominent multiprocessor systems. In this paper, we introduce a novel comparison model, the MC model, for multiprocessor systems. This model integrates the strengths of both the PMC and MM⁎ models, optimizing computing power and time. We present an algorithm detailing the MC model's operations and establish the conditions for a multiprocessor system G to be g-good-neighbor t-diagnosable under the MC model. A general method to determine a G's g-good-neighbor diagnosability under the MC model is also provided. We further highlight the MC model's advantages over the PMC and MM (including MM⁎) models. Lastly, we apply the MC model to Hypercube, determining its g-good-neighbor diagnosability.
ArticleNumber 115027
Author Wang, Mu-Jiang-Shan
Hsieh, Sun-Yuan
Xiang, Dong
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  fullname: Wang, Mu-Jiang-Shan
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  organization: Institute of Advanced Computing and Digital Engineering, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, PR China
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  givenname: Dong
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  email: hsiehsy@mail.ncku.edu.tw
  organization: Department of Computer Science and Information Engineering, National Cheng Kung University, Tainan 701, Taiwan
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Keywords Fault diagnosis
Multiprocessor system
Hypercube
Diagnosis model
The MC model
Reliability
System diagnosis
Model design
Diagnostic algorithm
Diagnosability
g-good-neighbor
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Snippet Diagnosing faults in multiprocessor systems has long been significant due to its performance impact and its blend of Graph Theory and Computer Science...
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elsevier
SourceType Enrichment Source
Index Database
Publisher
StartPage 115027
SubjectTerms Diagnosability
Diagnosis model
Diagnostic algorithm
Fault diagnosis
g-good-neighbor
Hypercube
Model design
Multiprocessor system
Reliability
System diagnosis
The MC model
Title G-good-neighbor diagnosability under the modified comparison model for multiprocessor systems
URI https://dx.doi.org/10.1016/j.tcs.2024.115027
Volume 1028
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