|
1. G. Levitin and A. Lisnianski, “Optimization of imperfect preventive maintenance for multi-state systems,” Reliability Engineering & System Safety, vol. 67, no. 2, pp. 193-203, February 2000.
|
|
2. X. Liu, W. Wang, F. Zhao and R. Peng, “Joint lot-size and preventive maintenance optimization for a production system,” International Journal of Performability Engineering, vol. 11, no. 1, pp. 91-96, January 2015.
|
|
3. R. Peng, B. Liu, Q. Zhai and W. Wang, “Optimal maintenance strategy for system subject to two failure modes,” Reliability Engineering & System Safety, in press, doi: 10.1016/j.ress.2017.07.014.
|
|
4. L. Yang, X. Ma, R. Peng, Q. Zhai and Y. Zhao, “A preventive maintenance policy based on dependent two-stage deterioration and external shocks,” Reliability Engineering & System Safety, vol. 160, pp. 201-211, April2017.
|
|
5. R. Yang, F. Zhao, J. Kang, and X. Zhang, “An inspection optimization model based on a three-stage failure process,” International Journal of Performability Engineering, vol. 10, no. 7, pp. 775-779, November 2014.
|
|
6. W. Wang, “A model to predict the residual life of rolling element bearings given monitored condition information to date,” IMA Journal of Management Mathematics, vol. 13, no. 1, pp. 3-16, January 2002.
|
|
7. W. Wang, “Modelling condition monitoring inspection using the delay time concept,” UK: University of Salford,1992.
|
|
8. W. Wang, F. Zhao and R. Peng, “A preventive maintenance model with a two-level inspection policy based on a three-stage failure process,” Reliability Engineering & System Safety, vol. 121, no. 1, pp. 207-220, January 2014.
|