On the Marshall-Olkin Copula Model for Network Reliability Under Dependent Failures

Matus, O; Barrera, J; Moreno, E; Rubino, G

Keywords: reliability, network design, optimization methods, failure analysis, Copula theory

Abstract

The Marshall-Olkin (MO) copulamodel has emerged as the standard tool for capturing dependence between components in failure analysis in reliability. In this model, shocks arise at exponential random times, that affect one or several components inducing a natural correlation in the failure process. However, because the number of parameter of the model grows exponentially with the number of components, MO suffers of the "curse of dimensionality." MO models are usually intended to be applied to design a network before its construction; therefore, it is natural to assume that only partial information about failure behavior can be gathered, mostly from similar existing networks. To construct such an MO model, we propose an optimization approach to define the shock's parameters in the MO copula, in order to match marginal failures probabilities and correlations between these failures. To deal with the exponential number of parameters of this problem, we use a column-generation technique. We also discuss additional criteria that can be incorporated to obtain a suitable model. Our computational experiments show that the resulting MO model produces a close estimation of the network reliability, especially when the correlation between component failures is significant.

Más información

Título según WOS: On the Marshall-Olkin Copula Model for Network Reliability Under Dependent Failures
Título de la Revista: IEEE TRANSACTIONS ON RELIABILITY
Volumen: 68
Número: 2
Editorial: IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Fecha de publicación: 2019
Página de inicio: 451
Página final: 461
Idioma: English
DOI:

10.1109/TR.2018.2865707

Notas: ISI