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Design methodology for fully dynamic-controlled polynomial profiles and reduced tracking error in CNC machines

机译:完全动态控制的多项式轮廓和减少CNC机床中的跟踪误差的设计方法

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摘要

High speed and high precision on computer numerically controlled (CNC) machines are major issues for most industrial automation processes. Among the most important factors for precise motion control are the control law, the controller implementation, and the profile reference. The effects of the control law and controller implementation on the tracking error in CNC machines have been widely studied, while the issue of profile reference has not received the required attention. To improve the dynamics provided by the conventional profile reference, several techniques have been proposed, focusing on peak jerk limitation. The novelty of this work is to develop a generalized methodology designed for producing dynamically constrained higher degree piecewise polynomial profiles, without limits in maximum polynomial degrees. They lead to define in an arbitrary way the dynamics shape, while the peak dynamics values constrained are maintained in order to improve the tracking error on CNC systems and giving the possibility to design fully dynamic-controlled trajectories. For experimentation purposes, a two-axis proportional-integral-derivative controller and profile reference generator are implemented in a low-cost field programmable gate array. The experimentation demonstrates the efficiency of the proposed methodology, showing the peak jerk and tracking error reduction, compared against recent reports from literature.
机译:计算机数控(CNC)机器上的高速和高精度是大多数工业自动化过程的主要问题。精确运动控制中最重要的因素是控制规律,控制器实现方式和配置文件参考。在数控机床中,控制律和控制器的实现对跟踪误差的影响已得到广泛研究,而轮廓参考的问题并没有引起人们的重视。为了改善常规轮廓参考提供的动态,已提出了几种技术,重点是峰值加速度限制。这项工作的新颖性是开发一种通用方法,该方法设计用于生成动态约束的更高次分段多项式轮廓,而没有最大多项式的限制。它们导致以任意方式定义动力学形状,同时保持受约束的峰值动力学值,以改善CNC系统上的跟踪误差,并提供设计完全动态控制的轨迹的可能性。出于实验目的,在低成本现场可编程门阵列中实现了两轴比例积分微分控制器和轮廓参考发生器。实验证明了所提出方法的有效性,与文献中的最新报告相比,该方法显示了峰值抖动和跟踪误差的减少。

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