One of the most important strategic decisions in Research-Development projects is network design. It needs to be optimized for the long-term efficient operation. This paper aims at designing the network of Supply Chain for R&D projects. Accordingly, it proposes a Goal programming model for solving a Project-oriented Supply Chain Management problem. The proposed model is developed to determine the optimal combination of the main contractors, executers, and various alternatives for project implementation. The model optimizes time, cost and reliability in the whole lifecycle for the R&D projects. A case study is presented to validate and illustrate the proposed model. The main reason for the high cost and time in the case study was due to the incorrect choice of the network of suppliers and consultants. The model has been tested by the numerical data, revealing that the model could have a significant contribution to the productivity of project-oriented organization. This model could serve as a guideline for managers and decision makers in R&D projects, enabling them to identify the best networks of the SC in their organizations to resolve and improve problems. It also acts as a useful basis for researchers to continue research concerning SCM in R&D projects.
Accepté le :
DOI : 10.1051/ro/2018068
Mots-clés : Project supply chain management, R&D projects, network design, goal programming
@article{RO_2019__53_4_1385_0, author = {Forozandeh, M. and Teimoury, E. and Makui, A.}, title = {A mathematical formulation of time-cost and reliability optimization for supply chain management in research-development projects}, journal = {RAIRO - Operations Research - Recherche Op\'erationnelle}, pages = {1385--1406}, publisher = {EDP-Sciences}, volume = {53}, number = {4}, year = {2019}, doi = {10.1051/ro/2018068}, mrnumber = {4001035}, zbl = {1433.90150}, language = {en}, url = {http://archive.numdam.org/articles/10.1051/ro/2018068/} }
TY - JOUR AU - Forozandeh, M. AU - Teimoury, E. AU - Makui, A. TI - A mathematical formulation of time-cost and reliability optimization for supply chain management in research-development projects JO - RAIRO - Operations Research - Recherche Opérationnelle PY - 2019 SP - 1385 EP - 1406 VL - 53 IS - 4 PB - EDP-Sciences UR - http://archive.numdam.org/articles/10.1051/ro/2018068/ DO - 10.1051/ro/2018068 LA - en ID - RO_2019__53_4_1385_0 ER -
%0 Journal Article %A Forozandeh, M. %A Teimoury, E. %A Makui, A. %T A mathematical formulation of time-cost and reliability optimization for supply chain management in research-development projects %J RAIRO - Operations Research - Recherche Opérationnelle %D 2019 %P 1385-1406 %V 53 %N 4 %I EDP-Sciences %U http://archive.numdam.org/articles/10.1051/ro/2018068/ %R 10.1051/ro/2018068 %G en %F RO_2019__53_4_1385_0
Forozandeh, M.; Teimoury, E.; Makui, A. A mathematical formulation of time-cost and reliability optimization for supply chain management in research-development projects. RAIRO - Operations Research - Recherche Opérationnelle, Tome 53 (2019) no. 4, pp. 1385-1406. doi : 10.1051/ro/2018068. http://archive.numdam.org/articles/10.1051/ro/2018068/
Project supply chain management: from agile to lean (2003).
,Managing Project Supply Chains. Gower Publishing Ltd., Farnham (2011).
,Systems Engineering and Analysis. Prentice Hall, Englewood Cliffs, NJ (1998).
and ,Supply chain design and analysis: models and methods. Int. J. Prod. Econ. 55 (1998) 281–294. | DOI
,A two-stage stochastic programming model for value-based supply chain network design. Sci. Iran. Trans. E Ind. Eng. 23 (2016) 348.
, and ,Supply chain management. Strategy, planning & operation. In: Das summa summarum des management. Prentice Hall, Upper Saddle River, NJ (2007) 265–275. | DOI
and ,Strategic supply and the management of inter-and intra-organisational relationships. J. Purchasing Supply Manage. 9 (2003) 19–29. | DOI
and ,Modelling for green supply chain evaluation. Math. Prob. Eng. 2013 (2013) 201208. | DOI
, and ,A model for network design of supply chain management in research projects. Uncertain Suppl. Chain Manag. 6 (2018) 407–422. | DOI
, and ,Essentials of Supply Chain Management. John Wiley & Sons, Hoboken, NJ (2018).
,Project Management: a Systems Approach to Planning, Scheduling, and Controlling. John Wiley & Sons, Hoboken, NJ (2017).
and ,Gower Handbook of Project Management, Gower Publishing Ltd., Farnham (1994).
(Ed.),Options for applying BPR in the Australian construction industry. Int. J. Project Manage. 14 (1996) 379–385. | DOI
and ,Manufacturing quality improvement and setup cost reduction in a vendor-buyer supply chain model. Eur. J. Ind. Eng. 11 (2017) 588–612. | DOI
, and ,Network structures and co-ordination mechanisms: a taxonomy. Int. J. Oper. Prod. Manage. 18 (1998) 538–554. | DOI
,Supply chain coordination with variable backorder, inspections, and discount policy for fixed lifetime products. Math. Prob. Eng. 2016 (2016) 6318737. | DOI | MR | Zbl
,Effect of variable transportation and carbon emission in a three-echelon supply chain model. Trans. Res. Part E: Logis. Trans. Rev. 91 (2016) 112–128. | DOI
, , and ,Effect of unequal lot sizes, variable setup cost, and carbon emission cost in a supply chain model. Math. Prob. Eng. 2015 (2015) 469486. | DOI | MR | Zbl
, , and ,A production-inventory model with probabilistic deterioration in two-echelon supply chain management. Appl. Math. Model. 37 (2013) 3138–3151. | DOI | MR | Zbl
,Handbook of Project-based Management, McGraw-Hill Professional Publishing, New York, NY (2008).
,Project Management for Research and Development: Guiding Innovation for Positive R&D Outcomes. CRC Press, Boca Raton, FL (2014). | DOI
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