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January 1, 1996IIE Transactions138 citations

Manufacturing cell design: an integer programming model employing genetic algorithms

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JJJeffrey A. JoinesCCC. Thomas CulbrethRKRussell E. King

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Abstract

The design of a cellular manufacturing system requires that a part population, at least minimally described by its use of process technology (part/machine incidence matrix), be partitioned into part families and that the associated plant equipment be partitioned into machine cells. At the highest level, the objective is to form a set of completely autonomous units such that inter-cell movement of parts is minimized. We present an integer program that is solved using a genetic algorithm (GA) to assist in the design of cellular manufacturing systems. The formulation uses a unique representation scheme for individuals (part/machine partitions) that reduces the size of the cell formation problem and increases the scale of problems that can be solved. This approach offers improved design flexibility by allowing a variety of evaluation functions to be employed and by incorporating design constraints during cell formation. The effectiveness of the GA approach is demonstrated on several problems from the literature.

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Cite This Study

Joines et al. (1996) studied this question.

synapsesocial.com/papers/6a3439346b65369c445efba4https://doi.org/10.1080/07408179608966253
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Cluster analysis in manufacturing cellular formation1989 · 105 citations
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  4. 4Manufacturing Cell Formation with Multiple, Functionally Identical Machines1990 · 16 citations
  5. 5Genetic algorithms in search, optimization, and machine learning1989 · 49,342 citations