A vision based error-corrective algorithm for flexible parts assembly

J.Y. Kim, H. cho
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引用次数: 15

Abstract

For successful assembly of flexible parts, informations about their deformation as well as possible misalignments between the holes and their mating parts are essential. Such informations can be acquired from visual sensors. In the case of deformable part assembly, the corrective assembly motion to compensate for such misalignments needs to be determined from the measured informations. Since this assembly process is difficult to design based on the analysis of flexible parts, this paper presents a visual sensor-based error corrective algorithm using a neural network. The performance of the implemented neural network is verified through a series of experimental work. The results show that the proposed error-corrective algorithm is effective in compensating for the lateral misalignment, and that it can be extended to the assembly tasks carried under more general conditions.
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基于视觉的柔性零件装配误差校正算法
对于柔性部件的成功装配,有关其变形以及孔与其配合部件之间可能的错位的信息是必不可少的。这些信息可以从视觉传感器获得。在可变形零件装配的情况下,需要根据测量信息确定补偿这种不对准的纠正装配运动。针对基于柔性零件分析的装配过程设计困难的问题,提出了一种基于视觉传感器的神经网络误差校正算法。通过一系列的实验工作验证了所实现的神经网络的性能。结果表明,所提出的误差校正算法能有效地补偿横向不对准,并可推广到更一般条件下的装配任务。
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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