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Optimal Search Strategy of Robotic Assembly Based on Neural Vibration Learning

机译:基于神经振动学习的机器人装配最优搜索策略

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摘要

This paper presents implementation of optimal search strategy (OSS) in verification of assembly process based on neural vibration learning. The application problem is the complex robot assembly of miniature parts in the example of mating the gears of one multistage planetary speed reducer. Assembly of tube over the planetary gears was noticed as the most difficult problem of overall assembly. The favourable influence of vibration and rotation movement on compensation of tolerance was also observed. With the proposed neural-network-based learning algorithm, it is possible to find extended scope of vibration state parameter. Using optimal search strategy based on minimal distance path between vibration parameter stage sets (amplitude and frequencies of robots gripe vibration) and recovery parameter algorithm, we can improve the robot assembly behaviour, that is, allow the fastest possible way of mating. We have verified by using simulation programs that search strategy is suitable for the situation of unexpected events due to uncertainties.
机译:本文提出了基于神经振动学习的最优搜索策略(OSS)在装配过程验证中的实现。应用问题是在将一个多级行星减速器的齿轮配对的示例中,复杂的微型零件机器人组装。将管组装在行星齿轮上是整体组装中最困难的问题。还观察到振动和旋转运动对补偿公差的有利影响。利用所提出的基于神经网络的学习算法,可以找到振动状态参数的扩展范围。使用基于振动参数级集(机器人抓握振动的幅度和频率)之间的最小距离路径和恢复参数算法的最佳搜索策略,我们可以改善机器人装配性能,即允许最快的配对方式。通过使用仿真程序,我们已经验证了搜索策略适用于由于不确定性导致的意外事件的情况。

著录项

  • 来源
    《Journal of robotics》 |2011年第1期|p.549489.1-549489.9|共9页
  • 作者单位

    Faculty of Electrical Engineering, University of Tuzla, 75000 Tuzla, Bosnia and Herzegovina;

    H&HInc, 75000 Tuzla, Bosnia and Herzegovina;

    ABB, 71000 Sarajevo, Bosnia and Herzegovina;

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  • 正文语种 eng
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