Simple repair policies and decompositions for semi-coherent systems with simultaneous failures
Guido Lagos, Jorge Navarro, Hector Olivero

TL;DR
This paper introduces simple $r$-out-of-$n$ repair policies for semi-coherent systems with simultaneous failures, providing explicit formulas for system performance metrics under these policies.
Contribution
It derives exact, simple expressions for key performance measures of semi-coherent systems using $r$-out-of-$n$ repair policies and models simultaneous failures with LFMO distribution.
Findings
Explicit formulas for mean time-to-failure and repair
Expressions for system failure probability before repair
Cost analysis and long-term average cost calculations
Abstract
We consider semi-coherent binary systems that are subject to simultaneous failures of its components. These are systems whose components can be either working or failed; the system can also be working or failed depending on the state of the components; and repairing a component cannot cause the system to fail. We consider that one or more components can fail simultaneously, allowing us to model external shocks and disasters. For this, we use the L\'evy-frailty Marshall-Olkin (LFMO) multivariate distribution to model the failure times of the components. We aim to answer in which states of the system we should repair the components. This is a challenging question, as the number of repair policies grows super-exponentially in the number of components. To tackle this, we propose a simple family of repair policies, which we call -out-of-:R repair policies, where one repairs all failed…
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Taxonomy
TopicsReliability and Maintenance Optimization · Statistical Distribution Estimation and Applications · Probability and Risk Models
