Title :
Buffers sizing in assembly lines using a Lorenz multiobjective ant colony optimization algorithm
Author :
Chehade, Hicham ; Yalaoui, Farouk ; Amodeo, Lionel ; Dugardin, Frédéric
Author_Institution :
Lab. d´´Optimisation des Syst. Industriels, Univ. de Technol. de Troyes, Troyes, France
Abstract :
In this paper, a new multiobjective resolution approach is proposed for solving buffers sizing problems in assembly lines. The considered problem consists of sizing the buffers between the different stations in a line taking in consideration that the size of each buffer is bounded by a lower and an upper value. Two objectives are taken in consideration: the maximization of the throughput rate and the minimization of the total size of the buffers. The resolution method is based on a multiobjective ant colony algorithm but using the Lorenz dominance instead of the well-known Pareto dominance relationship. The Lorenz dominance relationship provides a better domination area by rejecting the solutions founded on the extreme sides of the Pareto front. The obtained results are compared with those of a classical Multiobjective Ant Colony Optimization Algorithm. For that purpose, three different measuring criteria are applied. The numerical results show the advantages and the efficiency of the Lorenz dominance.
Keywords :
Pareto analysis; assembling; cooperative systems; minimisation; Lorenz multiobjective ant colony optimization algorithm; Pareto dominance relationship; Pareto front; assembly lines; buffers sizing problems; minimization; throughput rate maximization; Algorithm design and analysis; Ant colony optimization; Assembly; Encoding; Optimization; Production; Throughput; Ant Colony; Assembly lines; Buffers sizing; Lorenz dominance; Multiobjective optimization;
Conference_Titel :
Machine and Web Intelligence (ICMWI), 2010 International Conference on
Conference_Location :
Algiers
Print_ISBN :
978-1-4244-8608-3
DOI :
10.1109/ICMWI.2010.5647916