[1] Sahara, C. R., & Aamer, A. M. (2022). Real-time data integration of an internet-of-things-based smart warehouse: a case study. International Journal of Pervasive Computing and Communications, 18(5), 622-644.
[2] Tao, F., Qi, Q., Liu, A., & Kusiak, A. (2018). Data-driven smart manufacturing. Journal of Manufacturing Systems, 48, 157-169, 2018.
[3] Prajapati, A., Bechtel, J., & Ganesan, S. (2012). Condition based maintenance: a survey. Journal of Quality in Maintenance Engineering, 18(4), 384-400.
[4] Ahmad R., & Kamaruddin, S. (2012). An overview of time-based and condition-based maintenance in industrial application. Computers &
industrial engineering, 63(1), 135-149.
[5] Zeppetella, L., Gebennini, E., Grassi, A., & Rimini, B. (2017). Optimal production scheduling with customer-driven demand substitution. International Journal of Production Research, 55(6), 1692-1706.
[6] Montgomery, D. C. (2020). Introduction to statistical quality control. John Wiley & Sons.
[7] Makis, V. (2009). Multivariate Bayesian process control for a finite production run. European Journal of Operational Research, 194(3), 795-806.
[8] Victorino, L., Verma, R., & Wardell, D. G. (2013). Script usage in standardized and customized service encounters: Implications for perceived service quality. Production and Operations Management, 22(3), 518-534.
[9] EFNMS, (2014). European Federation of National Maintenance Societies.
[10] Hinds, M. D. (1985). PREVENTIVE MAINTENANCE: A CHECKLIST. in The New York Times, ed.
[11] Shewhart W. A. & Deming, W. E. (1986). Statistical method from the viewpoint of quality control. Courier Corporation.
[12] Joe Qin, S. (2003). Statistical process monitoring: basics and beyond. Journal of Chemometrics: A Journal of the Chemometrics Society, 17(8-9), 480-502.
[13] Lai, X., Chen, Z., & Bidanda, B. (2019). Optimal decision of an economic production quantity model for imperfect manufacturing under hybrid maintenance policy with shortages and partial backlogging. International Journal of Production Research, 57(19), pp. 6061-6085.
[14] Arani, M., Dastmard, M., Ebrahimi, Z. D., Momenitabar, M., & Liu, X. (2020). Optimizing the total production and maintenance cost of an integrated multi-product process and maintenance planning (IPPMP) model. IEEE International Symposium on Systems Engineering (ISSE), 1-8.
[15] Salmasnia, A., & Kaveie, M. (2022). Joint optimisation of production run length and maintenance policy for an imperfect process with multiple correlated quality characteristics. International Journal of Quality Engineering and Technology, 8(4), 379-405.
[16] Boumallessa, Z., Chouikhi, H., Elleuch, M., & Bentaher, H.(2023). Modeling and optimizing the maintenance schedule using dynamic quality and machine condition monitors in an unreliable single production system," Reliability Engineering & System Safety, 235, 109216.
[17] Megoze Pongha, P., Kenné, J.-P., De Jesus Garcia, E., & Hof, L. A. (2023). Optimal joint production, maintenance and product quality control policies for a continuously deteriorating manufacturing system. International Journal of Modelling and Simulation, 43(3), 135-152.
[18] Fakher, H. B., Nourelfath, M., & Gendreau, M. (2018). Integrating production, maintenance and quality: A multi-period multi-product profit-maximization model. Reliability Engineering & System Safety, 170, 191-201.
[19] Mitchell, M. (1998). An introduction to genetic algorithms. MIT press.
[20] Ramezani, S., Moini, A., & Riahi, M. (2019). A Model to Determining the State of Degradation and Remaining Useful Life of Rotating Equipment, With a New Approach to Combination and Predicting Health Index," (in eng), Modares Mechanical Engineering, 19(10), 2351-2365.
[21] Verma, S., Pant, M., & Snasel, V. (2021). A comprehensive review on NSGA-II for multi-objective combinatorial optimization problems. IEEE access, 9, 57757-57791.
[22] Crosier, R. B. (1988). Multivariate generalizations of cumulative sum quality-control schemes. Technometrics, 30(3), 291-303.
[23] Lowry, C. A., Woodall, W. H., Champ, C. W., & Rigdon, S. E. (1992). A multivariate exponentially weighted moving average control chart. Technometrics, 34(1), 46-53.
[24] Mitchell, M. (1998). An introduction to genetic algorithms. MIT press.
[25] Ramezani, S., Moini, A., & Riahi, M. (2019). A Model to Determining the State of Degradation and Remaining Useful Life of Rotating Equipment, With a New Approach to Combination and Predicting Health Index. Modares Mechanical Engineering, 19(10), pp. 2351-2365.