Title :
A Periodic Replacement Model Based on Cumulative Repair-Cost Limit for a System Subjected to Shocks
Author :
Sheu, Shey-Huei ; Chang, Chin-Chih ; Chen, Yen-Luan ; Zhang, Zhe George
Author_Institution :
Dept. of Stat. & Inf. Sci., Providence Univ., Taichung, Taiwan
fDate :
6/1/2010 12:00:00 AM
Abstract :
A system is subject to shocks that arrive according to a non-homogeneous Poisson process. As these shocks occur, the system experiences one of two types of failures: a type-I failure (minor), rectified by a minimal repair; or a type-II failure (catastrophic) that calls for a replacement. In this paper, we consider a periodic replacement model with minimal repair based on a cumulative repair-cost limit. Under such a policy, the system is anticipatively replaced at the n -th type-I failure, or at the k-th type-I failure (k <; n) at which the accumulated repair cost exceeds the pre-determined limit, or at any type-II failure, whichever occurs first. The minimum-cost replacement policy is studied by showing its existence, uniqueness, and structural properties. Our model is a generalization of several classical models in maintenance literature. Some numerical analyses are also presented.
Keywords :
maintenance engineering; numerical analysis; stochastic processes; cumulative repair-cost limit; maintenance; nonhomogeneous Poisson process; numerical analyses; periodic replacement model; shocks; Costs; Councils; Distribution functions; Electric shock; Informatics; Numerical analysis; Probability density function; Random variables; Statistics; Technology management; Cumulative repair-cost limit; minimal repair; optimal maintenance; replacement policy;
Journal_Title :
Reliability, IEEE Transactions on
DOI :
10.1109/TR.2010.2048733