This paper considers the decision problem for a minimum setup strategy of a production system arising in the assembly of printed circuit boards of different types, using a placement machine with multi‐slot feeders. We formulate the problem as a binary linear programming model, and propose a heuristic procedure to find the solution that consists of a board‐assembly sequence, an associated component loading and unloading strategy and a feeder‐assignment plan within reasonable computational effort. Computational results from solving the simulated problem instances by using the heuristic method and the mathematical model are provided and compared. The proposed heuristic procedure can be incorporated into the PCB scheduling optimization software to decrease cycle times and increase overall assembly throughput in a high‐mix, low‐volume PCB manufacturing environment.
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1 May 2003
This article was originally published in
Integrated Manufacturing Systems
Research Article|
May 01 2003
A minimum setup strategy for sequencing PCBs with multi‐slot feeders Available to Purchase
Wei‐Shing Chen;
Wei‐Shing Chen
Department of Industrial Engineering and Management, Yuan‐Ze University, Changhua, Taiwan
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Chiuh‐Cheng Chyu
Chiuh‐Cheng Chyu
Department of Industrial Engineering and Management, Yuan‐Ze University, Changhua, Taiwan
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Publisher: Emerald Publishing
Online ISSN: 1758-583X
Print ISSN: 0957-6061
© MCB UP Limited
2003
Integrated Manufacturing Systems (2003) 14 (3): 255–267.
Citation
Chen W, Chyu C (2003), "A minimum setup strategy for sequencing PCBs with multi‐slot feeders". Integrated Manufacturing Systems, Vol. 14 No. 3 pp. 255–267, doi: https://doi.org/10.1108/09576060310463208
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