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Optimised scheduling in human-robot collaboration - a use case in the assembly of printed circuit boards

机译:人机协作中的优化调度-印刷电路板组装中的用例

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Advances in the technologies of sensors and lightweight robots increasingly enable direct physical interaction between humans and robots. This so-called human-robot collaboration is supposed to offer more flexibility in production processes, as opposed to fully automated processes. The aim of this contribution is to describe an integer linear programming model which optimally coordinates the distribution of tasks between humans and robots in a realistic production process of printed circuit boards (PCBs), where the objective is to minimise the completion time of a board. In addition, we discuss an extended case wherein a whole set of different boards is to be assembled, which is highly relevant for low volume production with a high degree of customisation. After stating an extended integer linear programming (ILP) formulation, we propose two practical approaches for solving the computationally more complex second scenario: an order-based heuristic approach and a matheuristic applying a truncated variant of the ILP model with different sequencing strategies. The computational evaluation based on a real-world use case from the PCB industry underlines the efficacy of the matheuristic approach for obtaining a good overall makespan.
机译:传感器和轻型机器人技术的进步越来越多地实现了人与机器人之间的直接物理交互。与全自动过程相反,这种所谓的人机协作应该在生产过程中提供更大的灵活性。这项贡献的目的是描述一个整数线性规划模型,该模型在印刷电路板(PCB)的实际生产过程中以最佳方式协调人与机器人之间的任务分配,其目的是最大程度地减少电路板的完成时间。另外,我们讨论了扩展的情况,其中要组装一组不同的板,这与具有高度定制化的小批量生产高度相关。在陈述了扩展的整数线性规划(ILP)公式之后,我们提出了两种实用的方法来解决计算上更复杂的第二种情况:基于顺序的启发式方法和采用ILP模型的截短变体和不同排序策略的数学方法。基于来自PCB行业的实际使用案例进行的计算评估突显了采用数学方法获得良好总体寿命的功效。

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