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Original Articles

Inventory replenishment policies for deteriorating items in a declining market

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Pages 813-836 | Received 13 Sep 1982, Published online: 27 Apr 2007

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Read on this site (27)

Katherinne Salas Navarro, Jaime Acevedo Chedid, Nohora Mercado Caruso & Shib Sankar Sana. (2018) An inventory model of three-layer supply chain of wood and furniture industry in the Caribbean region of Colombia. International Journal of Systems Science: Operations & Logistics 5:1, pages 69-86.
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Umakanta Mishra. (2016) An inventory model for two parameter Weibull deterioration and declining demand under shortages. Journal of Information and Optimization Sciences 37:4, pages 511-533.
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Jonas C.P. Yu, H.M. Wee, P.C. Yang & Simon Wu. (2016) Suboptimal and optimal order policies for fixed and varying replenishment interval with declining market. International Journal of Systems Science 47:8, pages 1828-1836.
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Anita R Vila-Parrish, Julie Simmons Ivy & Beixiang He. (2015) Impact of the influenza season on a hospital from a pharmaceutical inventory management perspective. Health Systems 4:1, pages 12-28.
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Ming-Guan Huang. (2014) Profit improvement through a reservation policy for seasonal goods with lognormal demand. Journal of Industrial and Production Engineering 31:6, pages 363-377.
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R. Roy Chowdhury, S. K. Ghosh & K. S. Chaudhuri. (2014) An Order-Level Inventory Model for a Deteriorating Item with Time-Quadratic Demand and Time-Dependent Partial Backlogging with Shortages in All Cycles. American Journal of Mathematical and Management Sciences 33:2, pages 75-97.
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Ming-Guan Huang. (2013) Economic ordering model for deteriorating items with random demand and deterioration. International Journal of Production Research 51:18, pages 5612-5624.
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Rakesh Prakash Tripathi. (2012) An inventory model with shortage and exponential demand rate under Permissible delay in payments. International Journal of Management Science and Engineering Management 7:2, pages 134-139.
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Y.S. Lin, Jonas C.P. Yu & Kung-Jeng Wang. (2009) An efficient replenishment model of deteriorating items for a supplier–buyer partnership in hi-tech industry. Production Planning & Control 20:5, pages 431-444.
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Kuo-Lung Hou & Li-Chiao Lin. (2008) An ordering policy with a cost minimization procedure for deteriorating items under trade credit and time discounting. Journal of Statistics and Management Systems 11:6, pages 1181-1194.
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Liang-Yuh Ouyang, Kun-Shan Wu & Chih-Te Yang. (2008) RETAILER'S ORDERING POLICY FOR NON-INSTANTANEOUS DETERIORATING ITEMS WITH QUANTITY DISCOUNT, STOCK-DEPENDENT DEMAND AND STOCHASTIC BACKORDER RATE. Journal of the Chinese Institute of Industrial Engineers 25:1, pages 62-72.
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S. K. Ghosh, S. K. Goyal & K. S. Chaudhuri. (2006) An inventory model with Weibull demand rate, finite rate of production and shortages. International Journal of Systems Science 37:14, pages 1003-1009.
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S. K. Ghosh & K. S. Chaudhuri. (2006) An EOQ model with a quadratic demand, time-proportional deterioration and shortages in all cycles. International Journal of Systems Science 37:10, pages 663-672.
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Kun Jen Chung & Sui Fu Tsai. (2003) A solution procedure to determine joint pricing and replenishment policy for deteriorating inventory systems with declining market. Journal of Information and Optimization Sciences 24:1, pages 85-101.
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Jen Ming Chen & Ching Shun Lin. (2003) Optimal replenishment scheduling for inventory items with Weibull distributed deterioration and time-varying demand. Journal of Information and Optimization Sciences 24:1, pages 1-21.
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Kun-Shan Wu. (2002) EOQ inventory model for items with Weibull distribution deterioration, time-varying demand and partial backlogging. International Journal of Systems Science 33:5, pages 323-329.
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Kun-Shan Wu & Tzu-Chiang Huang. (2001) Optimal inventory replenishment model with time-varying demand, Weibull distribution deterioration and shortages under SFI policy. Journal of Information and Optimization Sciences 22:3, pages 495-507.
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Kun-Shan Wu. (2000) An optimal production scheduling policy for deteriorating items with time-varying production and demand rate. Journal of Interdisciplinary Mathematics 3:1, pages 93-107.
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Hung-an Liu. (1999) A variable production scheduling policy for deteriorating items. Journal of Statistics and Management Systems 2:2-3, pages 199-210.
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Kun-Jen Chung & Sui-Fu Tsai. (1999) A solution procedure to determine inventory replenishment policies for deteriorating items in a declining market. Journal of Information and Optimization Sciences 20:1, pages 1-15.
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MONCERA. HARIGA. (1995) Lot sizing models for deteriorating items with time-dependent demand. International Journal of Systems Science 26:12, pages 2391-2401.
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HAIPING XU & HSU-PIN (BEN) WANG. (1992) OPTIMAL INVENTORY POLICY FOR PERISHABLE ITEMS WITH TIME PROPORTIONAL DEMAND. IIE Transactions 24:5, pages 105-110.
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VIJAY AGGARWAL & HAMID BAHARI-KASHANI. (1991) Synchronized Production Policies for Deteriorating Items in a Declining Market. IIE Transactions 23:2, pages 185-197.
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G. E. MARTIN & MIN-CHIANG WANG. (1990) Estimation technique for non-stationary parameters with application to disposal of inventories subject to obsolescence. International Journal of Systems Science 21:9, pages 1855-1868.
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Katherinne Salas-Navarro, Whady F. Florez & Leopoldo Eduardo Cárdenas-Barrón. (2024) A vendor-managed inventory model for a three-layer supply chain considering exponential demand, imperfect system, and remanufacturing. Annals of Operations Research 332:1-3, pages 329-371.
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Ronald David Suárez Díaz, Carlos D. Paternina-Arboleda, José Luis Martínez-Flores & Miguel A. Jimenez-Barros. (2020) Economic order quantity for perishables with decreasing willingness to purchase during their life cycle. Operations Research Perspectives 7, pages 100146.
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R. P. Tripathi & Sandeep Kumar Chaudhary. (2017) Inflationary Induced EOQ Model for Weibull Distribution Deterioration and Trade Credits. International Journal of Applied and Computational Mathematics 3:4, pages 3341-3353.
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Ozgun Caliskan Demirag, Sanjay Kumar & K.S. Mallikarjuna Rao. (2017) A note on inventory policies for products with residual-life-dependent demand. Applied Mathematical Modelling 43, pages 647-658.
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