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Reliability Analysis Method on Repairable System with Standby Structure Based on Goal Oriented Methodology
Author(s) -
Yi Xiaojian,
Dhillon B.S.,
Shi Jian,
Mu Huina,
Dong Haiping
Publication year - 2016
Publication title -
quality and reliability engineering international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.913
H-Index - 62
eISSN - 1099-1638
pISSN - 0748-8017
DOI - 10.1002/qre.1953
Subject(s) - standby power , fault tree analysis , operator (biology) , reliability engineering , reliability (semiconductor) , markov process , process (computing) , computer science , failure mode and effects analysis , engineering , power (physics) , mathematics , electrical engineering , statistics , voltage , transcription factor , gene , operating system , physics , quantum mechanics , biochemistry , chemistry , repressor
This paper presents a reliability analysis method on repairable system with standby structure based on goal oriented (GO) methodology. Firstly, a new combination of GO operator, which is composed of a new logical GO operator named Type 18A operator and a new auxiliary GO operator named Type 20 operator, is created to represent standby mode. The availability formula of standby equipment with translation exception is deduced based on Markov process theory. Then, the application method of combination of GO operator for standby mode and the analysis process of repairable system with standby structure based on GO method are proposed. Thirdly, this new combination of GO operator is applied in availability analysis of the hydraulic oil supply system of power‐shift steering transmission. Finally, the results obtained by the new GO method are compared with the results of fault tree analysis, Monte Carlo simulation, GO methods using Type 2 operator and Type 18 operator to represent the standby mode, respectively. And the comparison results show that this new GO method is applicable and reasonable for reliability analysis of repairable system with standby structure. All in all, this paper provides guidance for reliability analysis of repairable systems with standby structure. Copyright © 2015 John Wiley & Sons, Ltd.