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Contour Controller Design for Cubic Parallel Machine Tool

机译:三次并联机床轮廓控制器设计

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摘要

In machining processes, contouring accuracy is usually more important than tracking performance. In order to reduce the contour error, there have been many contour control algorithms for conventional machine tools, which noticeably improve their contouring accuracy. However, the available contour control algorithms cannot be directly applied to the parallel machine tools. The dynamic characteristics of the parallel machine tools are not consistent inside workspace and unsymmetrical disturbances can be imposed on any axis. Due to these, mismatched dynamics cause unwanted contour error. In this paper, we present a contour control algorithm for the cubic parallel machine tool that employs the parallel mechanism for its moving table, which can be also applied to a general parallel manipulator. The contour error estimation method for free-formed curve trajectory is proposed and the relation between the contour error vectors in joint and Cartesian spaces is considered. In order to show the validity of the algorithm, the contour control simulations and experiments are made for various contour trajectories with the cubic parallel machine tool. The results show that the proposed controller reduces the contour error considerably both in joint and Cartesian spaces.
机译:在加工过程中,轮廓精度通常比跟踪性能更重要。为了减小轮廓误差,已有许多用于常规机床的轮廓控制算法,这些算法显着提高了它们的轮廓精度。但是,可用的轮廓控制算法不能直接应用于并行机床。并联机床的动态特性在工作空间内不一致,并且可以在任何轴上施加非对称干扰。由于这些原因,不匹配的动力学会导致不必要的轮廓误差。在本文中,我们提出了一种针对立方并联机床的轮廓控制算法,该机床的移动工作台采用了并联机构,该算法也可以应用于一般的并联机械手。提出了自由曲线轨迹的轮廓误差估计方法,并考虑了关节和笛卡尔空间中轮廓误差矢量之间的关系。为了证明该算法的有效性,利用三次平行机床对各种轮廓轨迹进行了轮廓控制仿真和实验。结果表明,所提出的控制器在关节和笛卡尔空间中均大大降低了轮廓误差。

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