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An analysis of task assignment and cycle times when robots are added to human-operated assembly lines, using mathematical programming models

机译:使用数学编程模型将机器人添加到人机装配线时的任务分配和周期时间分析

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Adding robots to a human-operated assembly line influences both the short- and long-term operation of the line. However, the effects of robots on assembly line capacity and on cycle time can only be studied if appropriate task assignment models are available. This paper shows how traditional assembly line balancing models can be changed in order to determine the optimal number of workstations and cycle time when robots with different technological capabilities are able to perform a predetermined set of tasks. The mathematical programming models for the following three cases are presented and analysed: i) only workers are assigned to the workstations; ii) either a worker or a robot is assigned to a workstation; iii) a robot and a worker are also assigned to specific workstations. The data of an assembly line producing power inverters is used to illustrate the proposed calculations. Both the assignment of tasks and the changes of cycle time are analysed within the AIMMS modelling environment. The computational characteristics of the proposed mathematical programming models are also examined and tested using benchmark problems. The models presented in this paper can assist operations management in making decisions relating to assembly line configuration.
机译:将机器人添加到人机的装配线中影响线路的短期和长期运行。然而,如果适当的任务分配模型可用,则只能研究机器人对装配线容量和循环时间的影响。本文显示了如何改变传统的装配线平衡模型,以便确定具有不同技术能力的机器人能够执行预定的一组任务时的工作站和循环时间的最佳数量。提出和分析了以下三种情况的数学编程模型:i)只分配工人; ii)工人或机器人被分配给工作站; III)机器人和工人也被分配给特定的工作站。制造功率逆变器的装配线的数据用于说明所提出的计算。在AIMMS建模环境中分析任务的分配和周期时间的变化。还使用基准问题检查和测试所提出的数学编程模型的计算特性。本文呈现的模型可以帮助运营管理制定与装配线配置有关的决策。

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