Sensorless Manipulation Using Transverse Vibrations of a Plate

V. Bhatt, K. Bijhringer, Ken Goldberg
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引用次数: 99

Abstract

The existing industrial parts feeders move the parts through a sequence of mechanical filters that reject parts in unwanted orientations. In this paper we develop a new setup that uses a different vibratory mechanism to systematically manipulate parts, by actively orienting and localizing them. The idea is to generate and change dynamic modes for a plate by varying the applied frequency of oscillation. Depending on the node shapes of the plate for these frequencies, the position and orientation of the parts can be controlled. We develop an analysis of the underlying dynamics, and show that it can be used to predict the behavior of objects placed on the vibrating plate. Using this analysis, we propose that the applied frequencies can be automatically sequenced to obtain a "sensorless" strategy for manipulating a given object.
利用平板横向振动的无传感器操纵
现有的工业零件送料器通过一系列机械过滤器将零件移出不需要的方向。在本文中,我们开发了一种新的设置,它使用不同的振动机构来系统地操纵零件,通过主动定向和定位它们。这个想法是通过改变施加的振荡频率来产生和改变板的动态模式。根据这些频率的板的节点形状,可以控制部件的位置和方向。我们对潜在的动力学进行了分析,并表明它可以用来预测放置在振动板上的物体的行为。利用这种分析,我们提出应用频率可以自动排序,以获得操纵给定对象的“无传感器”策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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