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On the design of traps for feeding 3D parts on vibratory tracks

机译:关于在振动轨道上馈入3D零件的陷阱的设计

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In the context of automated feeding (orienting) of industrial parts, we study the algorithmic design of traps in the bowl feeder track that filter out all but one orientation of a given polyhedral part. We propose a new class of traps that removes a V-shaped portion of the track. The proposed work advances the state-of-the-art in algorithmic trap design by extending earlier work-which focuses solely on 2D parts-to 3D parts, and by incorporating a more realistic part motion model in the design algorithm. We exploit the geometric structure of the design problem and build on concepts and techniques from computational geometry to obtain an efficient algorithm that reports the complete set of valid traps.
机译:在工业零件的自动进给(定向)的情况下,我们研究了碗状进给器轨道中的陷阱的算法设计,该陷阱可以滤除给定多面体零件的除一个方向外的所有方位。我们提出了一种新的陷阱类型,可以删除轨道的V形部分。拟议的工作通过将仅专注于2D零件的早期工作扩展到3D零件,并将更逼真的零件运动模型纳入设计算法,从而改进了算法陷阱设计的最新技术。我们利用设计问题的几何结构,并基于计算几何学的概念和技术来获得报告完整有效陷阱集的有效算法。

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