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A hybrid approach for resilient sourcing and supply chain network design
Fatemeh Sabouhi
, Mohammad Saeed Jabalameli
,
Armin Jabbarzadeh
, Behnam Fahimnia
École de technologie supérieure
Systems Engineering Department
itechsanté - Research Institute for Innovation in Health Technologies
NUMÉRIX - Research laboratory on organizational engineering in a digital enterprise context
School of Industrial Engineering
University of Tehran
School of Industrial Engineering
Iran University of Science and Technology
Institute of Transport and Logistics Studies
The University of Sydney
Research output
:
Contribution to journal
›
Journal Article
›
peer-review
2
Citations (Scopus)
Overview
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Keyphrases
A Hybrid Approach
100%
Accelerated Benders Decomposition
33%
Bi-objective Optimization Model
33%
Data Envelopment Analysis Model
66%
Design Decisions
33%
Global Uncertainty
33%
Hybrid Approach
33%
Major Disturbance
33%
Modern Business
33%
Multiple Sourcing
33%
Network Design
33%
Optimization Model
33%
Performance Level
33%
Production Capacity
33%
Programming Approaches
33%
Resilience Strategies
33%
Resilient
100%
Resilient Supply Chain
33%
Risk Mitigation Strategies
33%
Safety Stock
33%
Solution Approach
33%
Sourcing Decisions
33%
Stochastic Programming
33%
Substitutable Products
33%
Supplier Evaluation
100%
Supply Chain
33%
Supply Chain Cost
33%
Supply Chain Network Design
100%
Supply Chain Resilience (SCRES)
33%
Supply Chain Resilient
33%
Total Supply Chain Cost
33%
Unified Data
66%
Vulnerability
33%
Computer Science
Analysis Model
28%
Case Study
14%
Data Envelopment Analysis
28%
Hybrid Approach
100%
Major Disruption
14%
Network Design
100%
Objective Optimization
14%
Practical Result
14%
Risk Mitigation Strategy
14%
Stochastic Programming
14%
Supply Chain
100%
Social Sciences
Data Envelopment Analysis
40%
Fortification
20%
Optimization Model
40%
Outsourcing
20%
Production Capacity
20%
Stochastics
40%
Supply Chain Management
100%
Supply Chain Network
100%
Supply Chain Resilience
20%