Back to Search Start Over

Feedback optimal control of dynamic stochastic two-machine flowshop with a finite buffer

Authors :
Thien-My Dao
Thang T. Diep
Jean-Pierre Kenné
Source :
International Journal of Industrial Engineering Computations, Vol 1, Iss 2, Pp 95-120 (2010)
Publication Year :
2010
Publisher :
Growing Science, 2010.

Abstract

Article history: Received 1 May 2010 Received in revised form 6 June 2010 Accepted 7 June 2010 Available online 11 June 2010 This paper examines the optimization of production involving a tandem two-machine system producing a single part type, with each machine being subject to random breakdowns and repairs. An analytical model is formulated with a view to solving an optimal stochastic production problem of the system with machines having up-downtime non-exponential distributions. The model developed is obtained by using a dynamic programming approach and a semi-Markov process. The control problem aims to find the production rates needed by the machines to meet the demand rate, through a minimization of the inventory/shortage cost. Using the Bellman principle, the optimality conditions obtained satisfy the Hamilton-JacobiBellman equation, which depends on time and system states, and ultimately, leads to a feedback control. Consequently, the new model enables us to improve the coefficient of variation (CVup/down) to be less than one while it is equal to one in Markov model. Heuristics methods are used to involve the problem because of the difficulty of the analytical model using several states, and to show what control law should be used in each system state (i.e., including Kanban, feedback and CONWIP control). Numerical methods are used to solve the optimality conditions and to show how a machine should produce. © 2010 Growing Science Ltd. All rights reserved.

Details

ISSN :
19232934 and 19232926
Volume :
1
Database :
OpenAIRE
Journal :
International Journal of Industrial Engineering Computations
Accession number :
edsair.doi.dedup.....ad4a3c5212b9c74f1bc1eb5ec588be60
Full Text :
https://doi.org/10.5267/j.ijiec.2010.02.001