Title of article
Cell formation in group technology using constraint programming and Boolean satisfiability
Author/Authors
Soto، نويسنده , , Ricardo and Kjellerstrand، نويسنده , , Hakan and Durلn، نويسنده , , Orlando and Crawford، نويسنده , , Broderick and Monfroy، نويسنده , , Eric and Paredes، نويسنده , , Fernando، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
5
From page
11423
To page
11427
Abstract
Cell formation consists in organizing a plant as a set of cells, each of them containing machines that process similar types or families of parts. The idea is to minimize the part flow among cells in order to reduce costs and increase productivity. The literature presents different approaches devoted to solve this problem, which are mainly based on mathematical programming and on evolutionary computing. Mathematical programming can guarantee a global optimal solution, however at a higher computational cost than an evolutionary algorithm, which can assure a good enough optimum in a fixed amount of time. In this paper, we model and solve this problem by using state-of-the-art constraint programming (CP) techniques and Boolean satisfiability (SAT) technology. We present different experimental results that demonstrate the efficiency of the proposed optimization models. Indeed, CP and SAT implementations are able to reach the global optima in all tested instances and in competitive runtime.
Keywords
Boolean satisfiability , Manufacturing cells , Machine grouping , Constraint programming
Journal title
Expert Systems with Applications
Serial Year
2012
Journal title
Expert Systems with Applications
Record number
2352480
Link To Document