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Plant layout and pick-and-place strategies for improving performances in secondary packaging plants of food products

机译:改善食品二级包装厂性能的工厂布局和取放策略

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摘要

The aim of secondary packaging plants is to pick food products from a conveyor belt and to place them into boxes. The typical configuration of these packaging plants consists of a set of sequential robot stations, performing pick and place cycles from one conveyor to another parallel one, which transport the products and the boxes to be filled. Depending on the relative movement of the two conveyors, the plant operates in co-current or counter-current flow configuration. Undesired perturbations in the product flow rate from its nominal value can lead to critical events, i.e. unpicked product at the end of the first conveyor or not-completely filled boxes. Even if the structures of co-current flow and of counter-current flow plants, are very similar, their behaviour in non-nominal or perturbed conditions can be significantly different. The aim of this paper is to deeply investigate the behaviour of these two kinds of secondary packaging lines, evaluating their performances in the case of different pick and place strategies, using discrete events simulation techniques. Results show to which extent the different proposed control strategies can improve the performances of both co-current and counter-currents plants and, in particular, how co-current plant layouts can achieve performances which are equivalent to, or perhaps even better than, those that can be obtained with a counter-current plant layout, that cannot be freely used since it has been patented. The simulation tool, control algorithms and results presented can help packaging plant designers for choosing the most appropriate solutions and for properly sizing the plant. Copyright © 2012 John Wiley & Sons, Ltd
机译:二级包装厂的目的是从传送带上拾取食品并将其放入盒子中。这些包装工厂的典型配置包括一组顺序的机器人工位,它们从一个输送机到另一个平行的输送机执行拾取和放置循环,这些输送机将产品和要装满的箱子运输。根据两个输送机的相对运动,设备以并流或逆流配置运行。产品流速与其标称值之间的不希望有的扰动可能导致严重事件,即在第一条传送带末端或未完全装满的盒子中未拣选的产品​​。即使并流设备和逆流设备的结构非常相似,它们在非标称或扰动条件下的行为也可能有很大不同。本文的目的是深入研究这两种辅助包装线的行为,并使用离散事件模拟技术在不同的拾取和放置策略下评估其性能。结果表明,不同的拟议控制策略可在多大程度上改善并流和逆流电厂的性能,尤其是并流电厂的布局如何实现与那些电厂甚至与之相当的性能可以通过逆流工厂布局获得,由于已获得专利,因此不能自由使用。所提供的仿真工具,控制算法和结果可帮助包装厂设计人员选择最合适的解决方案,并确定工厂的尺寸。版权所有©2012 John Wiley&Sons,Ltd

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