What is it about?
As the U-shaped assembly lines are concerned with manual assembly operations, workers’ performance plays a major role. However, the past studies assume that all workers can carry out all tasks with an equal performance level, and actual task times do not depend on the worker who performs it. On the other hand, this is unrealistic. In this study, maximization of the line efficiency for the U-shaped assembly line worker assignment and balancing problem by considering the worker performance is aimed. First, a non-linear model of the problem is formulated, and then it is linearized. Later, an Artificial Bee Colony Algorithm and a Genetic Algorithm are proposed to solve it, in short computational times. A hypothetical data set (Jackson, 1956), a real data set (Cevikcan et al., 2009) and data sets of assembly line worker assignment and balancing problem (Araújo et al., 2015) were solved by using the model and the meta-heuristics. The meta-heuristics were able to reach solutions that have equal line efficiency with the optimum solution found by the proposed mathematical model. The contribution of this study is that the mathematical model for the U-shaped line assembly line worker assignment and balancing type-E problem that considers the workers’ performance is formulated, and an Artificial Bee Colony Algorithm is proposed for the first time for this problem type.
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Why is it important?
The workers’ performance is considered within the proposed mathematical model of the U-shaped Assembly Line Worker Assignment and Balancing Problem (UALWABP-E) for the first time in the literature.
Perspectives
The assumption that all workers can perform all tasks at equal performance level is one of the main assumptions in the literature that is unrealistic. By considering the workers’ real performance for each task, the proposed model and meta-heuristics can be employed in real-life settings.
Assist. Prof. Mehmet Kursat Oksuz
Istanbul Teknik Universitesi
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This page is a summary of: U-shaped assembly line worker assignment and balancing problem: A mathematical model and two meta-heuristics, Computers & Industrial Engineering, October 2017, Elsevier,
DOI: 10.1016/j.cie.2017.08.030.
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