- Guo, C. and Li, X. (2014). “A multi-echelon inventory system with supplier selection and order allocation under stochastic demand”, Int. J. Production Economics, Vol. 151, PP. 37- 47.
- Yang, P. C., Wee, H. M., Chung, S. L., Ho, P. C. (2010). “Sequential and global optimization for a closed-loop deteriorating inventory supply chain”, Mathematical and Computer Modelling, Vol. 52, No. 1-2, PP. 161- 176.
- Schrady, D. A. (1967). “Adeterministic inventory model for repairable items”, Naval Research Logistics Quarterly, Vol. 14, No. 3, PP. 391- 398.
- Chung, S. L., Wee, H. M. and Yang, P. C. (2008). “Optimal policy for a closed-loop supply chain inventory system with remanufacturing”, Mathematical and Computer Modelling, Vol. 48, No. 5- 6, PP. 867- 881.
- Jaber, M. Y. and Saadany, A. M. A. E. (2009). “The production, remanufacture and waste disposal model with lost sales”, International Journal of Production Economics, Vol. 120, No. 1, PP. 115- 124.
- Widyadana, G. A. and Wee, H. M. (2012). “An economic production quantity model for deteriorating items with multiple production setups and rework”, International Journal of Production Economics, Vol. 138, No. 1, PP. 62– 67.
- Aliyu, M. D. S. and Boukas, E. K. (1998). “Discrete-time inventory models with deteriorating items”, International Journal of Systems science, Vol. 29, No. 9, PP. 1007- 1014.
- Pakkala, T. P. M. and Achary, K. K. (1991). “A two warehouse probabilistic order level inventory model for deteriorating items”, Journal of Operational Research Society, Vol. 42, No. 12, PP. 1117- 1122.
- Shah, N. H. (1998). “A discrete-time probabilistic inventory model for deteriorating items under a known price increase”, International Journal of Systems Science, Vol. 29, No. 8, PP. 823- 827.
- Aggoun, L., Benkherouf, L. and Tadj, L. (2000). “Stochastic Jump inventory model with deteriorating items”, Stochastic Analysis and Applications, Vol. 18, No. 1, PP. 1- 10.
- Benkherouf, L., Aggoun, L. and Tadj, L. (1999). “On the optimal EOQ for a stochastic jump inventory model with deteriorating items”, Journal of Statistical Research, Vol. 33, No. 1, PP. 1- 8.
- Chen X., and Simchi Levi, D. (2004). “Coordinating inventory control and pricing strategies with random demand and fixed ordering cost the finite horizon case”, Operations Research, Vol. 52, No. 6, PP. 887–896.
- Zhang J. L., Chen J. and Lee C. Y. (2008). “Joint optimization on pricing, promotion and inventory control with stochastic demand”, Int J Prod Econ. Vol. 116, No. 2, PP. 190– 198.
- Maihami, R. and Karimi, B. (2014). “Optimizing the pricing and replenishment policy for non-instantaneous deteriorating items with stochastic demand and promotional efforts”, Computers & Operations Research, Vol. 51, PP. 302– 312.
- Whitin, T. M. (1957). Theory of inventory management, Princeton University Press, Princeton, NJ.
- Ghare, P. N. and Schrader, G. F. (1963). “A model for exponentially decaying inventories”, Journal of Industrial Engineering, Vol. 15, PP. 238- 243.
- Ouyang, L. Y., Wu, K. S. and Yang, C. T. (2006). “A study on an inventory model for non- instantaneous deteriorating items with permissible delay inpayments”, Comput Ind Eng, Vol. 51, No. 4, PP. 637– 651.
- Yang, C., Te, Quyang, L. Y. and Wu, H. H. (2009). “Retailers optimal pricing and ordering policies for Non-instantaneous deteriorating items with price-dependent demand and partial backlogging”, Math Prob Eng,Vol. 2009.
- Maihami, R. and Nakhai, I. (2012). “Joint pricing and inventory control for non- instantaneous deteriorating items with partial backlogging and time and price dependent demand”, Int J Prod Econ, Vol. 136, No. 1, PP. 116– 122.
- Wee, H. M., Lee, M. C., Yu, J. C. P. and Edward Wang, C. (2011). "Optimal replenishment policy for a deteriorating green product: Life cycle costing analysis", International Journal of Production Economics, Vol. 133, No. 2, PP. 603- 611.
- Sazvar, Z., Mirzapour Al-e-hashem, S. M. J., Baboli, A. and Akbari Jokar, M. R. (2014). "A bi-objective stochastic programming model for a centralized green supply chain with deteriorating products", International Journal of Production Economics, Vol. 150, No. 0, PP. 140- 154.
- Moussawi-Haidar, L., Dbouk, W., Jaber, M. Y. and Osman, I. H. (2014). "Coordinating a three-level supply chain with delay in payments and a discounted interest rate", Computers & Industrial Engineering, Vol. 69, PP. 29- 42.
- Kapoor, S. (2014). "An inventory model for non-instantaneous deteriorating products with price and time dependent demand", Mathematical Theory and Modeling, Vol. 4, No. 10, PP. 160– 168.
- Tat, R., Taleizadeh, A. A. and Esmaeili, M. (2015). "Developing economic order quantity model for non-instantaneous deteriorating items in vendor-managed inventory (VMI) system", International Journal of Systems Science, Vol. 46, No. 7, PP. 1257- 1268.
- Chakraborty, D., Jana, D. K. and Roy, T. K. (2015). "Multi-item integrated supply chain model for deteriorating items with stock dependent demand under fuzzy random and bifuzzy environments", Computers & Industrial Engineering, Vol. 88, PP. 166- 180.
- Ghiami, Y. and Williams, T. (2015). "A two-echelon production-inventory model for deteriorating items with multiple buyers", International Journal of Production Economics, Vol. 159, PP. 233- 240.
- Geetha, K. and Udayakumar, R. (2016). "Optimal lot sizing policy for non-instantaneous deteriorating items with price and advertisement dependent demand under partial backlogging", International Journal of Applied and Computational Mathematics, Vol. 2, No. 2, PP. 171- 193.
- Maihami, R., Karimi, B. and Fatemi Ghomi, S. M. T. (2016). "Effect of two-echelon trade credit on pricing-inventory policy of non-instantaneous deteriorating products with probabilistic demand and deterioration functions", Annals of Operations Research, Vol. 239, No. 2, PP. 1- 37.
- Bai, Q., Xu, X., Xu, J. and Wang, D. (2016). "Coordinating a supply chain for deteriorating items with multi-factor-dependent demand over a finite planning horizon", Applied Mathematical Modelling, Vol. 40, No. 21-22, PP. 9342–9361.
- Priyan, S. and Uthayakumar, R. (2016). "Economic design of an inventory system involving probabilistic deterioration and variable setup cost through mathematical approach", International Journal of Mathematics in Operational Research, Vol. 8, No. 3, PP. 312- 341.
- Sarker, B. R. and Wu, B. (2016). "Optimal models for a single-producer multi-buyer integrated system of deteriorating items with raw materials storage costs", The International Journal of Advanced Manufacturing Technology, Vol. 82, No. 1, PP. 49- 63.
- Aljazzar, S. M., Jaber, M. Y. and Moussawi-Haidar, L. (2016) "Coordination of a three-level supply chain (supplier–manufacturer–retailer) with permissible delay in payments", Applied Mathematical Modelling, Vol. 3, No. 3, PP. 176-188.
- Chen, Z. and Sarker, B. R. (2017). "Integrated production-inventory and pricing decisions for a single-manufacturer multi-retailer system of deteriorating items under JIT delivery policy", The International Journal of Advanced Manufacturing Technology, Vol. 89, No. 5-8, PP. 2099–2117 .
- Spiegel, M. R. (1960). “Applied Differential Equations, Prentice-Hall”, Englewood Cliffs, NJ.
- Misra, R. B. (1975). “Optimal production lot size model for a system with deteriorating inventory”, International Journal of Production Research, Vol. 13, No. 5, PP. 495- 505.
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