Analysis of Lead Time Delays in Supply Chain: A Case Study
Commenced in January 2007
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Edition: International
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Analysis of Lead Time Delays in Supply Chain: A Case Study

Authors: Abdel-Aziz M. Mohamed, Nermeen Coutry

Abstract:

Lead time is a critical measure of a supply chain's performance. It impacts both the customer satisfactions as well as the total cost of inventory. This paper presents the result of a study on the analysis of the customer order lead-time for a multinational company. In the study, the lead time was divided into three stages respectively: order entry, order fulfillment, and order delivery. A sample of size 2,425 order lines was extracted from the company's records to use for this study. The sample data entails information regarding customer orders from the time of order entry until order delivery. Data regarding the lead time of each stage for different orders were also provided. Summary statistics on lead time data reveals that about 30% of the orders were delivered later than the scheduled due date. The result of the multiple linear regression analysis technique revealed that component type, logistics parameter, order size and the customer type have significant impacts on lead time. Data analysis on the stages of lead time indicates that stage 2 consumed over 50% of the lead time. Pareto analysis was made to study the reasons for the customer order delay in each stage. Recommendation was given to resolve the problem.

Keywords: Lead time reduction, customer satisfaction, service quality, statistical analysis.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1107822

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References:


[1] S. Chopra and P. Meindl, Supply Chain Management: Strategy, Planning and Operations, 2nd edition, Pearson Prentice Hall, 2004.
[2] W. Stevenson, Operations Management, Eleventh Edition, IRWIN/ McGraw-Hil, 2012.
[3] J. Kuṧar, A. Brezovar, J. Grum, and M. Starbek, “Realistic Lead Time Scheduling of Operations of Orders,” International Journal of Machine Tools & Manufacturing, vol. 44, 2004, pp. 1037–1046.
[4] C. K. Gudum, “On The Distribution of Lead Time Delays in Supply Chain,” Working paper, Copenhagen Business School
[5] C. Yano, “Setting Planned Lead times in Serial Production Systems with Tardiness Penalty”, Management Science, Vol. 33, No. 1, pp.95-106, 1987.
[6] C. Yano, “Stochastic Lead-Times in Two-level Assembly Systems”, IIE Transactions, Vol. 19, pp.371-378, 1987.
[7] C. Yano, “Stochastic Lead-Times in Two-level Distribution Type Networks”, Naval Research Logistics, Vol. 34, pp. 831-834, 1987.
[8] L. Gong, T. Kok, and J. Ding, “Optimal Lead-Times Planning in a Serial Production System”, Management Science, Vol. 40, No. 5, pp. 629-632, 1994.
[9] D. Feng, M. Jiang and L. Chen, “Lead Time Planning in Stochastic Production System: An Approach Using Perturbation Analysis,”, Proceedings of IEEE International Conference on Mechatronics & Automation, Niagara Falls, Canada, July 2005
[10] A. Senapati, P. Mishra, B. Routra, and A. Biswas, “An Extensive Literature Review on Lead Time Reduction in Inventory Control,” International Journal of Machine Tools & Manufacturing, vol. 44, 2004, pp. 1037–1046.
[11] P. Julie Wijaya, "The Relationship between Price, Lead Time, and Delay toward the Order Quantity in Steel Manufacturer", Universal Journal of Industrial and Business Management, Vol. 1, no. 1, 2013, pp. 1-7.
[12] D. Lind, W. Marchal, and S. Wathen, Statistical Techniques in Business & Economics with Global Data Sets, 13th edition, pages 538-541, 2008.
[13] G. Keller and B. Warrack, Statistics for Management and Economics, 6th Edition, pages 704-706, 2003.