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Improving decision making in product flow-based tiling automation for custom mosaic design

机译:改进基于产品流的贴砖自动化中用于自定义马赛克设计的决策

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The purpose of this paper is to present a new tile dispensing decision-making to improve a row formation of a product flow-based tiling automation that has been being developed to support tile placement for custom mosaic design. Design/methodology/approach - A new tile dispensing decision-making combines maximum tile loading and simple cycle strategies to minimize time for forming rows of tiles. The maximum tile loading strategy is for minimizing the number of loading rounds, while the simple cycle strategy is for minimizing the movement during the row formation. Findings - This proposed decision-making has been developed; implemented in LabVIEW software; linked with other LabVIEW-based programs to control the system; and tested. The results showed the tile dispensing with the proposed decision-making performed better than the previous one. Research limitations/implications - The tiling automation is being developed and is currently on a prototyping stage. Originality/value - Tile dispensing is critical for this row by row automated assembly, but the existing shortest distance strategy does not guarantee the best performance for a row formation. Therefore, the combination of the maximum tile loading and simple cycle strategies has been developed to improve the performance of the product flow-based tiling automation to better support assembly of custom mosaic design that requires individual tesserae to be assembled to particular positions to illustrate an image properly.
机译:本文的目的是提出一种新的瓷砖分配决策方法,以改善基于产品流的贴砖自动化的行形成方式,该技术已得到开发以支持自定义马赛克设计的瓷砖放置。设计/方法/方法-一种新的瓷砖分配决策将最大的瓷砖加载量和简单的循环策略结合在一起,以最大程度地减少形成瓷砖行的时间。最大的瓦片加载策略用于最小化加载回合数,而简单的循环策略用于最小化行形成期间的移动。调查结果-拟议的决策已经制定;在LabVIEW软件中实现;与其他基于LabVIEW的程序链接以控制系统;和测试。结果表明,与建议的决策相比,瓷砖分配的执行效果更好。研究的局限性/意义-瓦片自动化正在开发中,目前处于原型制作阶段。独创性/价值-瓷砖分配对于这种逐行自动组装至关重要,但是现有的最短距离策略无法保证成行的最佳性能。因此,已开发出最大瓷砖负载和简单循环策略的组合,以提高基于产品流的贴砖自动化的性能,以更好地支持定制镶嵌设计的组装,该组装需要将单个镶嵌镶嵌到特定位置以显示图像正确地。

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