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Automated Process Adjustments Of Chip Cutting Operations Using Neural Network And Statistical Approaches

机译:使用神经网络和统计方法对切屑操作进行自动过程调整

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摘要

This research explores the automated process adjustments of chip cutting operations by using neural network and statistical approaches in a computer-aided vision system. Multilayer ceramic capacitors (MLCC), owing to their excellent electronic characteristics, are applied in the design of high-density PC boards. The excellences of MLCCs are accomplished through rigorous controlling of every production step, especially the accuracy-demanding chip cutting operation. This research applies computer vision techniques to find mass centers of chips, locate cutting lines and calculate cutting distances for the automated, precise, and high-speed cutting of MLCCs. The statistical bounded adjustment method with response surface methodology and the radial basis function network model are proposed to solve the cutting deviation problems and to timely and quantitatively adjust the process towards the target values. Two common kinds of process deviations, shift and trend deviations, are explored in this research. Experimental results show that the statistical bounded adjustment and the radial basis function network, respectively, increase the effective adjustment rates of cutting deviations by 35% and 60% more than the current cutting method.
机译:这项研究探索了在计算机辅助视觉系统中使用神经网络和统计方法对切屑操作进行自动过程调整的方法。多层陶瓷电容器(MLCC)由于其出色的电子特性而被用于高密度PC板的设计中。 MLCC的卓越表现是通过严格控制每个生产步骤,特别是对精度要求很高的切屑操作来实现的。这项研究应用计算机视觉技术来查找切屑的质心,确定切割线并计算切割距离,以实现MLCC的自动,精确和高速切割。提出了一种基于响应面方法的统计有界调整方法和径向基函数网络模型,以解决切削偏差问题,并及时,定量地将过程向目标值调整。本研究探讨了两种常见的过程偏差,即偏移和趋势偏差。实验结果表明,统计有界调整和径向基函数网络分别使切削偏差的有效调整率比当前的切削方法提高了35%和60%。

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