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Coordinating Supply-Chain Management under Stochastic Fuzzy Environment and Lead-Time Reduction

Author

Listed:
  • Asif Iqbal Malik

    (Department of Industrial & Management Engineering, Incheon National University, 119, Academy-ro, Yeonsu-gu, Incheon 406772, Korea)

  • Biswajit Sarkar

    (Department of Industrial & Management Engineering, Hanyang University, Ansan 155 88, Gyeonggi-do, Korea)

Abstract

In this paper, a supply-chain (SC) coordination method based on the lead-time crashing is proposed for a seller–buyer system. By considering different transportation modes, we control the lead-time (LT) variability. For the first time, we have attempted to determine the impact of the reliable and unreliable seller in a continuous-review supply-chain model under the stochastic environment. The authors discussed two reliability cases for the seller. First, we consider the seller is unreliable and in the second case, the seller is reliable. In addition, the demand during the lead time is stochastic with the known mean and variance. The proposed approach tries to find an optimal solution that performs well without a specific probability distribution. Besides, a discrete investment is made to reduce the setup cost, which will indirectly help supply-chain members to increase the total profit of the system. In the proposed model, the seller motivates the buyer by reducing lead time to take part in coordinating decision-making for the system’s profit optimization. We derive the coordination conditions for both members, the seller and the buyer, under which they are convinced to take part in the cooperative decision-making plan. Therefore, lead-time crashing is the proposed incentive mechanism for collaborative supply-chain management. We use a fixed-charge step function to calculate the lead-time crashing cost for slow and fast shipping mode. We give two numerical examples to validate the proposed models and demonstrate the service-level enhancement under the collaborative supply-chain management in case of an unreliable seller. Concluding remarks and future extensions are discussed at the end.

Suggested Citation

  • Asif Iqbal Malik & Biswajit Sarkar, 2019. "Coordinating Supply-Chain Management under Stochastic Fuzzy Environment and Lead-Time Reduction," Mathematics, MDPI, vol. 7(5), pages 1-28, May.
  • Handle: RePEc:gam:jmathe:v:7:y:2019:i:5:p:480-:d:234670
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    References listed on IDEAS

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    1. Sarker, Bhaba R. & Coates, Eyler Robert, 1997. "Manufacturing setup cost reduction under variable lead times and finite opportunities for investment," International Journal of Production Economics, Elsevier, vol. 49(3), pages 237-247, May.
    2. Kowalski, Krzysztof & Lev, Benjamin, 2008. "On step fixed-charge transportation problem," Omega, Elsevier, vol. 36(5), pages 913-917, October.
    3. Venegas, Bárbara B. & Ventura, José A., 2018. "A two-stage supply chain coordination mechanism considering price sensitive demand and quantity discounts," European Journal of Operational Research, Elsevier, vol. 264(2), pages 524-533.
    4. Glock, C. H., 2012. "Lead time reduction strategies in a single-vendor-single-buyer integrated inventory model with lot size-dependent lead times and stochastic demand," Publications of Darmstadt Technical University, Institute for Business Studies (BWL) 57816, Darmstadt Technical University, Department of Business Administration, Economics and Law, Institute for Business Studies (BWL).
    5. Biswajit Sarkar & Sharmila Saren & Debjani Sinha & Sun Hur, 2015. "Effect of Unequal Lot Sizes, Variable Setup Cost, and Carbon Emission Cost in a Supply Chain Model," Mathematical Problems in Engineering, Hindawi, vol. 2015, pages 1-13, November.
    6. Glock, C. H., 2011. "A multiple-vendor single-buyer integrated inventory model with a variable number of vendors," Publications of Darmstadt Technical University, Institute for Business Studies (BWL) 57821, Darmstadt Technical University, Department of Business Administration, Economics and Law, Institute for Business Studies (BWL).
    7. Glock, Christoph H., 2012. "Lead time reduction strategies in a single-vendor–single-buyer integrated inventory model with lot size-dependent lead times and stochastic demand," International Journal of Production Economics, Elsevier, vol. 136(1), pages 37-44.
    8. Byungsoo Na & Jinpyo Lee & Hyung Jun Ahn, 2016. "Inventory Control by Multiple Service Levels under Unreliable Supplying Condition," Mathematical Problems in Engineering, Hindawi, vol. 2016, pages 1-10, August.
    9. Chaharsooghi, S. Kamal & Heydari, Jafar, 2010. "LT variance or LT mean reduction in supply chain management: Which one has a higher impact on SC performance?," International Journal of Production Economics, Elsevier, vol. 124(2), pages 475-481, April.
    10. Li, Xiang & Li, Yongjian & Cai, Xiaoqiang, 2012. "A note on the random yield from the perspective of the supply chain," Omega, Elsevier, vol. 40(5), pages 601-610.
    11. Saha, S. & Goyal, S.K., 2015. "Supply chain coordination contracts with inventory level and retail price dependent demand," International Journal of Production Economics, Elsevier, vol. 161(C), pages 140-152.
    12. Giri, B.C. & Sharma, S., 2014. "Manufacturer's pricing strategy in a two-level supply chain with competing retailers and advertising cost dependent demand," Economic Modelling, Elsevier, vol. 38(C), pages 102-111.
    13. Heydari, Jafar, 2014. "Lead time variation control using reliable shipment equipment: An incentive scheme for supply chain coordination," Transportation Research Part E: Logistics and Transportation Review, Elsevier, vol. 63(C), pages 44-58.
    14. Sana, Shib Sankar, 2012. "A collaborating inventory model in a supply chain," Economic Modelling, Elsevier, vol. 29(5), pages 2016-2023.
    15. Kyungchul Park & Kyungsik Lee, 2016. "Distribution-robust single-period inventory control problem with multiple unreliable suppliers," OR Spectrum: Quantitative Approaches in Management, Springer;Gesellschaft für Operations Research e.V., vol. 38(4), pages 949-966, October.
    16. Subrata Saha & Shibaji Panda & Nikunja Mohan Modak & Manjusri Basu, 2015. "Mail-in-rebate coupled with revenue sharing and downward direct discount for supply chain coordination," International Journal of Operational Research, Inderscience Enterprises Ltd, vol. 23(4), pages 451-476.
    17. Evan L. Porteus, 1986. "Optimal Lot Sizing, Process Quality Improvement and Setup Cost Reduction," Operations Research, INFORMS, vol. 34(1), pages 137-144, February.
    18. S. Özekici & M. Parlar, 1999. "Inventory models with unreliable suppliersin a random environment," Annals of Operations Research, Springer, vol. 91(0), pages 123-136, January.
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