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Reliability analysis of heterogeneous redundant systems with common cause failure using an enhanced goal-oriented methodology

  • Xiaojian Yi
  • , Wenxiao Fan
  • , Weijie Liang
  • , Chenhao Xu
  • , Lei Niu*
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • Peoples Liberation Army Engineering University
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

This paper addresses the reliability analysis of multivariate heterogeneous redundant systems subject to common cause failure (CCF). Traditional CCF models typically rely on homogeneous assumptions and time-invariant failure mechanisms, which limit their applicability to complex software-intensive systems. To overcome these limitations, an enhanced goal-oriented (GO) methodology is developed by modelling CCF as the interaction between continuous performance degradation and random external shocks. The proposed framework integrates stochastic degradation processes and Poisson-driven shock models with predefined failure thresholds to quantify time-varying CCF probabilities in heterogeneous redundant structures. The method is applied to a radio heliograph system to demonstrate its effectiveness. Comparative results show that neglecting CCF leads to overestimation of system reliability, while the proposed approach provides a more realistic and accurate assessment. The framework extends the applicability of GO-based reliability analysis to complex systems with heterogeneous components and dynamic failure mechanisms.

Original languageEnglish
JournalInternational Journal of Systems Science
DOIs
Publication statusAccepted/In press - 2026

Keywords

  • common cause failure
  • GO algorithm
  • heterogeneous redundant structures
  • performance degradation
  • random shocks
  • reliability analysis
  • Software-intensive systems
  • stochastic process

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