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Modelling the operation optimization of multi-head surface mounting machines with over-head gantry in printed circuit board assembly

机译:采用印刷电路板组件中的多头龙门架运行优化

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The operation optimization problem considered in this paper arises on a multi-head surface mounting machine with over-head gantry when it mounts electronic components on the surface of a printed circuit board (PCB) in PCB assembly. The aim of the problem is to minimize the time that a machine takes to mount all the required components. It is a complex optimization problem involving three inner-related sub-problems: (i) the assignment of nozzle types to heads, (ii) the assignment of feeders to slots, and (iii) the component placement optimization, specifying for each component on which head it is grasped and in which mount cycle it is processed, and in which orders the components are picked and mounted. A mathematical model with two stages is presented for it in this paper. In the first stage, nozzle assignment is formulated to a Mixed Integer Linear Programming (MILP). In the second stage, the latter two sub-problems are firstly integrated and formulated as a MILP model. The model could be solved to optimality only for very small size of problem instances.
机译:本文考虑的操作优化问题在多杆表面安装机上出现在具有超过头龙门的多头架,当它在PCB组件中安装在印刷电路板(PCB)表面上的电子元件时。问题的目的是最大限度地减少机器所需安装所有所需组件的时间。这是一个复杂的优化问题,涉及三个内部相关子问题:(i)将喷嘴类型分配给head,(ii)将馈线分配给插槽,(iii)组件放置优化,为每个组件指定它掌握了哪个头部并在其处理循环中,并在其中拾取和安装组件的订单。本文呈现了具有两个阶段的数学模型。在第一阶段,喷嘴分配被配制到混合整数线性编程(MILP)。在第二阶段,后两次子问题首先集成并配制为MILP模型。该模型可以解决仅针对非常小的问题实例的最优性。

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