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Feed-rate and trajectory optimization for CNC machine tools

机译:数控机床的进给率和轨迹优化

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摘要

The key task performed by CNCs is the generation of the time-sequence of set-points for driving each physical axis of the machine tool during program execution. This interpolation of axes movement must satisfy a number of constraints on axes dynamics (velocity, acceleration, and jerk), and on process outcome (smooth tool movement and precise tracking of the nominal tool-path at the desired feed-rate). This paper presents an algorithm for CNC kernels that aims at solving the axes interpolation problem by exploiting an Optimal Control Problem formulation. With respect to other solutions proposed in the literature, the approach presented here takes an original approach by assuming a predefined path tracking tolerance-to be added to the constraints listed above-and calculating the whole trajectory (path and feed-rate profile) that satisfies the given constraints. The effectiveness of the proposed solution is benchmarked against the trajectory generated by an industrial, state-of-the-art CNC, proving a significant advantage in efficiency and smoothness of axes velocity profiles.
机译:CNC执行的关键任务是在程序执行期间生成用于驱动机床各个物理轴的设定点的时间序列。轴运动的这种插值必须满足对轴动力学(速度,加速度和加速度率)以及过程结果(平稳的刀具运动和以所需进给速率精确跟踪标称刀具路径)的许多约束。本文提出了一种用于CNC内核的算法,旨在通过利用最优控制问题公式来解决轴插值问题。关于文献中提出的其他解决方案,此处介绍的方法采用原始方法,方法是假设要预定义的路径跟踪公差(要添加到上面列出的约束中),并计算出满足要求的整个轨迹(路径和进给率曲线)给定的约束。所提出的解决方案的有效性以工业级,最先进的CNC生成的轨迹为基准,证明了在轴速度曲线的效率和平滑性方面的显着优势。

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