4.7 Article

An optimal preventive maintenance policy for a two-stage competing-risk system with hidden failures

Journal

COMPUTERS & INDUSTRIAL ENGINEERING
Volume 154, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.cie.2021.107135

Keywords

Hidden failure; Two-stage competing-risk system; Periodic inspection; Delay-time model; Preventive maintenance

Funding

  1. National Natural Science Foundation of China [71931006, 71871119, 71801128, 71771121]

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This paper studies a two-stage system subject to two competing risks, where failures are hidden and can only be detected through periodic inspections. A preventive maintenance policy based on observed system state is proposed to minimize the expected cost rate, by determining the optimal inspection interval. A numerical example is provided to demonstrate the applicability of the method and results.
In many complex industrial systems, failures are not always evident to the operating crew, thus inspections are used to identify such hidden failures and then make necessary maintenance actions. In this paper, we study a two-stage system that is subject to two competing risks of degradation and random shocks. Failures of this two-stage competing-risk system are hidden and could only be detected by periodic inspections. For such a system, a delay-time model is introduced to describe the evolution of the system behavior. Random shocks are assumed to follow a homogeneous Poisson process. A preventive maintenance policy is presented in response to the observed system state, based on which the expected cost rate of the system is derived. This paper aims to find the minimal expected cost rate by determining the optimal inspection interval. A numerical example is presented to demonstrate the applicability of the proposed method and results.

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