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A Synchronization Approach for the Minimization of Contouring Errors of CNC Machine Tools

机译:最小化数控机床轮廓误差的同步方法

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This paper presents a synchronization control approach for the minimization of contouring errors of multi-axis CNC machine tools. The contouring errors are presented by the position synchronization errors that are defined as differential position errors between each axis and its adjacent ones. Using cross-coupling concept, a decentralized tracking controller is developed with feedback of both position and synchronization errors, formed with a combination of feedforward, feedback and a saturation control. It is proven that this controller can asymptotically stabilize both position and synchronization errors to zero. The proposed controller does not require significant use of the system dynamic models. Experiments performed on a multi-axis machine tool demonstrate improved performance especially in the contouring error minimization.
机译:本文提出了一种同步控制方法,以最小化多轴CNC机床的轮廓误差。轮廓误差由位置同步误差表示,位置同步误差定义为每个轴与其相邻轴之间的差分位置误差。利用交叉耦合的概念,开发了一种分散式跟踪控制器,该控制器具有位置和同步误差的反馈,由前馈,反馈和饱和控制的组合形成。事实证明,该控制器可以将位置误差和同步误差渐近稳定到零。提出的控制器不需要大量使用系统动态模型。在多轴机床上进行的实验显示出改善的性能,尤其是在轮廓误差最小化方面。

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