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首页> 外文期刊>International journal of engineering research in Africa >Determination of the Optimal Path of Three Axes Robot Using Genetic Algorithm
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Determination of the Optimal Path of Three Axes Robot Using Genetic Algorithm

机译:遗传算法确定三轴机器人的最佳路径

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摘要

Drilling is a chip machining process widely used in manufacturing .The term drilling includes all methods for making cylindrical holes in a work piece with chip cutting tools. There are many applications where drilling is used, such as drilling holes in PCBs. Robotic systems are used today to perform the drilling process. A problem that affects the use of these systems is the drilling sequence, as there are usually a number of points to visit. The determination of the drilling sequence is similar to the problem of synchronization of movement and travel time. The main objective is to optimize the time and trajectory of the three axes robot equipped with an automatic drill that seeks the best performance. In this paper, we have built a genetic optimization and problem solving algorithms to shorten the machining time to drill a given group of holes and reduce machining costs in order to improve the efficiency of the machining process as well robotic machining with three axes without degradation of the precision of the movement. The results of the experiments show that the proposed approach is feasible and practical. It is particularly useful in planning and scheduling systems for real-time manufacturing processes.
机译:钻孔是一种芯片加工过程,广泛用于制造。钻孔包括在用芯片切削刀具的工件中制造圆柱形孔的所有方法。使用钻孔的许多应用,例如PCB中的钻孔。今天使用机器人系统来执行钻井过程。影响这些系统的使用的问题是钻井序列,因为通常有许多要点。钻井序列的确定类似于运动和行驶时间的同步问题。主要目标是优化配备有自动钻头的三轴机器人的时间和轨迹,该机器人寻求最佳性能。在本文中,我们建立了一种遗传优化和解决问题的求解算法,以缩短机加工时间来钻孔给定的一组孔,并降低加工成本,以提高加工过程的效率,以提高带有三个轴的机器机械加工而不会降低运动的精度。实验结果表明,该方法是可行和实用的。它在规划和调度系统中特别有用,用于实时制造过程。

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