Types of signature analysis in reliability based on Hilbert series

  1. Mohammadi, F. 3
  2. Sáenz-de-Cabezón, E. 1
  3. Wynn, H.P. 2
  1. 1 Universidad de La Rioja
    info

    Universidad de La Rioja

    Logroño, España

    ROR https://ror.org/0553yr311

  2. 2 London School of Economics and Political Science
    info

    London School of Economics and Political Science

    Londres, Reino Unido

    ROR https://ror.org/0090zs177

  3. 3 Technical University of Berlin
    info

    Technical University of Berlin

    Berlín, Alemania

    ROR https://ror.org/03v4gjf40

Revista:
Journal of Symbolic Computation

ISSN: 0747-7171

Año de publicación: 2017

Volumen: 79

Páginas: 140-155

Tipo: Artículo

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DOI: 10.1016/J.JSC.2016.08.010 SCOPUS: 2-s2.0-84989869212 WoS: WOS:000387527800010 GOOGLE SCHOLAR

Otras publicaciones en: Journal of Symbolic Computation

Repositorio institucional: lock_openAcceso abierto Editor

Resumen

The present paper studies multiple failure and signature analysis of coherent systems using the theory of monomial ideals. While system reliability has been studied using Hilbert series of monomial ideals, this is not enough to understand in a deeper sense the ideal structure features that reflect the behavior of the system under multiple simultaneous failures. Therefore, we introduce the lcm-filtration of a monomial ideal, and we study the Hilbert series and resolutions of the corresponding ideals. Given a monomial ideal, we explicitly compute the resolutions for all ideals in the associated lcm-filtration, and we apply this to study coherent systems. Some computational results are shown in examples to demonstrate the usefulness of this approach and the computational issues that arise. We also study the failure distribution from a statistical point of view by means of the algebraic tools described. © 2016 Elsevier Ltd