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Reliability Analysis of a Cold Standby System with Imperfect Repair and under Poisson Shocks
Author(s) -
Yutian Chen,
Xianyun Meng,
Shengqiang Chen
Publication year - 2014
Publication title -
mathematical problems in engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.262
H-Index - 62
eISSN - 1026-7077
pISSN - 1024-123X
DOI - 10.1155/2014/507846
Subject(s) - reliability (semiconductor) , poisson distribution , renewal theory , shock (circulatory) , component (thermodynamics) , laplace transform , poisson process , mathematics , random variable , reliability engineering , markov process , reliability theory , variable (mathematics) , computer science , statistics , failure rate , engineering , mathematical analysis , physics , thermodynamics , power (physics) , medicine
This paper considers the reliability analysis of a two-component cold standby system with a repairman who may have vacation. The system may fail due to intrinsic factors like aging or deteriorating, or external factors such as Poisson shocks. The arrival time of the shocks follows a Poisson process with the intensity λ>0. Whenever the magnitude of a shock is larger than the prespecified threshold of the operating component, the operating component will fail. The paper assumes that the intrinsic lifetime and the repair time on the component are an extended Poisson process, the magnitude of the shock and the threshold of the operating component are nonnegative random variables, and the vacation time of the repairman obeys the general continuous probability distribution. By using the vector Markov process theory, the supplementary variable method, Laplace transform, and Tauberian theory, the paper derives a number of reliability indices: system availability, system reliability, the rate of occurrence of the system failure, and the mean time to the first failure of the system. Finally, a numerical example is given to validate the derived indices

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