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A High-Speed Control Algorithm Using Look-Ahead Strategy in CNC Systems

机译:使用CNC系统中的前瞻策略的高速控制算法

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In this paper, by integrating the look-ahead strategy into S-shape acc/dec algorithm, we propose a novel velocity control algorithm to improve machining quality and processing efficiency in CNC systems. We first propose a path-segment linking model that can deal with both line-connect and arc-connect conditions. Based on this model, we develop a new S-shape acc/dec algorithm with look-ahead velocity control which can deal with the low velocity zone called "tail" in a deceleration zone. Practical algorithms are proposed to find optimal velocity adaptively based on the maximum number of look-ahead segments and geometric properties of the interpolation path. We implement our technique in both simulation environment and real CNC systems and conduct a series of experiments. The experimental results show that our technique can significantly improve machining efficiency and reduce acceleration sudden changes by taking advantage of both S-shape acc/dec algorithm and look-ahead algorithm.
机译:在本文中,通过将外向策略集成到S形ACC / DEC算法中,我们提出了一种新的速度控制算法,提高CNC系统中的加工质量和加工效率。我们首先提出了一个路径段链接模型,可以处理线路连接和电弧连接条件。基于该模型,我们开发了一种新的S形ACC / DEC算法,具有展望前进的速度控制,可以在减速区中处理称为“尾”的低速区。提出了基于插值路径的最大展开段和几何属性的最大远程段和几何属性,以自适应地找到最佳速度。我们在模拟环境和真实数控系统中实现了我们的技术,并进行了一系列实验。实验结果表明,通过利用S形ACC / DEC算法和寻找前进算法,我们的技术可以显着提高加工效率并降低加速突变变化。

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