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Optimum random and age replacement policies for customer-demand multi-state system reliability under imperfect maintenance
Authors:Yen-Luan Chen  Chin-Chih Chang  Dwan-Fang Sheu
Affiliation:1. Department of Marketing Management, Takming University of Science and Technology, Taipei, Taiwan;2. Department of Chains and Franchising Management, Takming University of Science and Technology, Taipei, Taiwan;3. Department of Logistics Management, Takming University of Science and Technology, Taipei, Taiwan
Abstract:This paper proposes the generalised random and age replacement policies for a multi-state system composed of multi-state elements. The degradation of the multi-state element is assumed to follow the non-homogeneous continuous time Markov process which is a continuous time and discrete state process. A recursive approach is presented to efficiently compute the time-dependent state probability distribution of the multi-state element. The state and performance distribution of the entire multi-state system is evaluated via the combination of the stochastic process and the Lz-transform method. The concept of customer-centred reliability measure is developed based on the system performance and the customer demand. We develop the random and age replacement policies for an aging multi-state system subject to imperfect maintenance in a failure (or unacceptable) state. For each policy, the optimum replacement schedule which minimises the mean cost rate is derived analytically and discussed numerically.
Keywords:maintenance  optimisation  reliability  multi-state system  non-homogeneous continuous time Markov process
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