[1]CUI Tiejun,LI Shasha.Construction and application of factor connection distribution formula based on connection number and system function status[J].CAAI Transactions on Intelligent Systems,2023,18(6):1305-1311.[doi:10.11992/tis.202208029]
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CAAI Transactions on Intelligent Systems[ISSN 1673-4785/CN 23-1538/TP] Volume:
18
Number of periods:
2023 6
Page number:
1305-1311
Column:
学术论文—人工智能基础
Public date:
2023-11-05
- Title:
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Construction and application of factor connection distribution formula based on connection number and system function status
- Author(s):
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CUI Tiejun1; 2; LI Shasha1; 3
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1. School of Environmental and Chemical Engineering, Shenyang Ligong University, Shenyang 110159, China;
2. College of Safety Science and Engineering, Liaoning Technical University, Huludao 125105, China;
3. School of business administration, Liaoning Technical University, Huludao 125105, China
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- Keywords:
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system safety science; number of contacts; system function status; factor connection; distributed formula; multifactor influence; state level; reliability
- CLC:
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TP18;X913;C931.1
- DOI:
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10.11992/tis.202208029
- Abstract:
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The factor connection distributed formula is proposed and established to determine the influence trend of different factors on the system function state. This formula is introduced to discuss the relationship between the connection number and system function state and idea of factor connection distribution, to calculate the factor connection distribution coefficient, and to construct the factor connection distribution formula. The research shows that the factor connection distribution formula can be constructed based on the connection number structure. Furthermore, the connection number has the same characteristics as the system function status. A distribution relationship exists between the influencing factors and function status level. Thus a single-factor connection distribution formula can be used to contact all levels and their proportional relationships of system function status. The construction method for the ternary factor connection distribution formula is given, and the multifactor connection distribution formula is obtained using the same principle. Finally, the factor connection distribution formula inherits the characteristics of the connection number and can perform factor analysis, dynamic adjustment, and distributed representation, which is suitable for related research on system safety and reliability.