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A Simulation-Based Assessment of Alternative Assembly Line Configurations

机译:基于模拟的替代装配线配置评估

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The problem of optimally assigning a set of timed tasks (work elements) that compose a production process to workstations, while satisfying precedence constraints, is known as the Assembly Line Balancing (ALB) problem. The ALB problem (and its variants) is an NP-hard combinatorial optimization problem and for large-scale lines the objective is often reduced to finding feasible solutions. The situation is further exasperated by the time variability inherent in manufacturing tasks. Recent surveys on this field reveal that research efforts are directed primarily towards algorithmic approaches that provide incrementally better deterministic solutions to the ALB problem. Concurrently, the same surveys identify a considerable and widening gap between theoretical developments and actual implementations for assembly line configuration. In this paper, the focus is shifted towards developing a concise framework to assess actual performance under realistic conditions and it is proposed that simulation experiments may better predict the performance and robustness of balancing solutions before they are implemented in practice.
机译:最佳地分配一组定时任务(工作元素)的问题,该任务(工作元素)对工作站致意于满足优先约束,称为装配线平衡(ALB)问题。 ALB问题(及其变体)是NP - 硬组合优化问题,对于大规模的线路,目的通常还原以找到可行的解决方案。通过制造任务所固有的时间可变性进一步恼火。该领域的最近调查显示,研究工作主要针对算法方法,为ALB问题提供逐步更好的确定性解决方案。同时,相同的调查确定了大量的理论开发和用于装配线配置的实际实现之间的相当长和扩大的差距。在本文中,重点转向开发简洁的框架,以评估在现实条件下的实际性能,提出模拟实验可能更好地预测平衡解决方案的性能和稳健性在实践中实施。

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