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Original Articles

Availability analysis for periodically inspected systems subject to multiple failure modes

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Pages 258-271 | Received 26 Feb 2017, Accepted 22 Sep 2017, Published online: 12 Oct 2017

References

  • Berrade, M.D. , Scraf, P.A. , Cavalcante, C.A.V. , & Dwight, R.A. (2013). Imperfect inspection and replacement of a system with a defective state: A cost and reliability analysis. Reliability Engineering & System Safety , 120 , 80–87.
  • Castro, I.T. , Caballé, N.C. , & Pérez, C.J. (2015). A condition-based maintenance for a system subject to multiple degradation processes and external shocks. International Journal of Systems Science , 46 (9), 1692–1704.
  • Cha, J.H. , Lee, S. , & Mi, J. (2004). Bounding the optimal burn-in time for a system with two types of failure. Naval Research Logistics , 51 , 1090–1101.
  • Cheng, G.Q. , & Li, L. (2012). A geometric process repair model with inspections and its optimization. International Journal of Systems Science , 43 (9), 1650–1655.
  • Crowder, M.J. (2001). Classical competing risks. New York, NY: Chapman & Hall/CRC.
  • Cui, L. , & Xie, M. (2001). Availability analysis of periodically inspected systems with random walk model. Journal of Applied Probability , 38 , 860–871.
  • Cui, L. , & Xie, M. (2005). Availability of a periodically inspected system with random repair or replacement times. Journal of Statistical Planning and Inference , 131 , 89–100.
  • Cui, L. , Zhao, X. , Shen, J. , & Xu, Y. (2010). An availability model for storage products under periodical inspections, International Journal of Reliability, Quality and Safety Engineering , 17 , 89–103.
  • Dhillon, B. (1978). A k-out-of-n three-state devices system with common-cause failures. Microelectronics Reliability , 18 , 447–448.
  • Gharaibeh, K.M. , Gard, K.G. , & Steer, M.B. (2004). Accurate estimation of digital communication system metrics-SNR, EVM and ρ in a nonlinear amplifier environment. In Tauritz, J. (Ed.) Proceedings of the ARFTG microwave measurement conference (pp. 41–44), Orlando, FL, USA: IEEE.
  • Guo, H. , & Yang, X. (2007). A simple reliability block diagram method for safety integrity verification. Reliability Engineering & System Safety , 92 (9), 1267–1273.
  • Jin, T. , Ding, Y. , Guo, H. , & Nalajala, N. (2012). Managing wind turbine reliability and maintenance via performance-based contract. In Mohammed O.A. (Ed.) Proceedings of the power and energy society general meeting (pp. 1–6), San Diego, CA, USA: IEEE.
  • Khatab, A. , Ait-Kadi, D. , & Rezg, N. (2014). Availability optimisation for stochastic degrading systems under imperfect preventive maintenance. International Journal of Production Research , 52 , 4132–4141.
  • Klutke, G.A. , & Yang, Y. (2002). The availability of inspected systems subject to shocks and graceful degradation. IEEE Transactions on Reliability , 51 (3), 371–374.
  • Levitin, G. , Zhang, T. , & Xie, M. (2006). State probability of a series-parallel repairable system with two-types of failure states. International Journal of Systems Science , 37 (14), 1011–1020.
  • Lin, Y.H. , Chen, Y.C. , & Wang, W.Y. (2016). Optimal production model for imperfect process with imperfect maintenance, minimal repair and rework. International Journal of Systems Science: Operations & Logistics , 1–12.
  • Liu, X. , Li, J. , Al-Khalifa, K.N. , Hamouda, A.S. , Coit, D.W. , & Elsayed, E.A. (2013). Condition-based maintenance for continuously monitored degrading systems with multiple failure modes. IIE Transactions , 45 (4), 422–435.
  • Liu, X. , Li, J. , Al-Khalifa, K.N. , Hamouda, A.S. , & Coit, W. (2013). Condition-based maintenance for continuously monitored degrading systems with multiple failure modes. IIE Transactions , 45 (4), 42–35.
  • Peng, H. , Feng, Q. , & Coit, D.W. (2010). Reliability and maintenance modeling for systems subject to multiple dependent competing failure processes. IIE Transactions , 43 (1), 12–22.
  • Pham, H. (1997). Reliability analysis of digital communication systems with imperfect voters, Mathmatical and Computer Modelling, 26, 103–112.
  • Qiu, Q. , Cui, L. , & Gao, H. (2017). Availability and maintenance modelling for systems subject to multiple failure modes. Computers & Industrial Engineering , 108 , 192–198.
  • Tang, T. , Lin, D. , Banjevic, D. , & Jardine, A. K. (2013). Availability of a system subject to hidden failure inspected at constant intervals with non-negligible downtime due to inspection and downtime due to repair/replacement. Journal of Statistical Planning and Inference , 143 (1), 176–185.
  • Tsai, H.N. , Sheu, S.H. , & Zhang, Z.G. (2017). A trivariate optimal replacement policy for a deteriorating system based on cumulative damage and inspections. Reliability Engineering & System Safety , 160 , 122–135.
  • Xu, H. , & Hu, W. (2008). Availability optimisation of repairable system with preventive maintenance policy. International Journal of Systems Science , 39 (6), 655–664.
  • Zhang, Y.L. (2004). An optimal replacement policy for a three-state repairable system with a monotone process model. IEEE Transactions on Reliability , 53 (4), 452–457.
  • Zhang, J. , Huang, X. , Fang, Y. , Zhou, J. , Zhang, H. , & Li, J. (2016). Optimal inspection-based preventive maintenance policy for three-state mechanical components under competing failure modes. Reliability Engineering & System Safety , 152 , 95–103.
  • Zheng, Z. , Zhou, W. , Zheng, Y. , & Wu, Y. (2016). Optimal maintenance policy for a system with preventive repair and two types of failures. Computers & Industrial Engineering , 98 , 102–112.

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