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Published on: October 16, 2013
Flexibility evaluation of multiechelon supply chains.
João Flávio de Freitas Almeida1, Samuel Vieira Conceição1, Luiz Ricardo Pinto1
1Dept. of Industrial Engineering, Federal University of Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.
This study introduces a robust stochastic programming model to assess multiechelon supply chain flexibility. The approach enhances supply chain resilience by coordinating diverse business divisions and managing demand variability.
Area of Science:
- Operations Research
- Supply Chain Management
Background:
- Multiechelon supply chains require tactical flexibility and coordination to manage environmental uncertainties.
- Existing mathematical models for supply chain flexibility often become complex and limited under uncertainty.
Purpose of the Study:
- To present a unified approach for evaluating the flexibility of a four-echelon supply chain.
- To develop a robust stochastic programming model that integrates plans from multiple business divisions.
Main Methods:
- Development of a robust stochastic programming model for a four-echelon supply chain.
- Simultaneous consideration of conflicting goals from marketing, logistics, manufacturing, and procurement divisions.
- Analysis using deterministic parameters followed by stochastic parameters to evaluate flexibility.
Main Results:
- Evaluation of supply, manufacturing, and distribution flexibility.
- Tradeoff analysis between demand variability and service levels.
- Demonstration of improved supply chain resilience through integrated management styles.
Conclusions:
- The proposed model offers a unified approach to assess and enhance supply chain flexibility and resilience.
- The model can be extended to analyze operational strategies during supply chain disruptions.
- Effective coordination of business divisions is crucial for managing uncertainty and improving performance.
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