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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental implementation of Taylor series expansion error compensation on a bi-axial CNC machine
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Experimental implementation of Taylor series expansion error compensation on a bi-axial CNC machine

机译:泰勒级数膨胀误差补偿在双轴数控机床上的实验实现

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摘要

In this paper, a new model-based Taylor series expansion error compensation (TSEEC) strategy is proposed to improve the contouring accuracy for computer numerically controlled (CNC) machines. In TSEEC, the contour error compensation problem is formulated as a Taylor series expansion problem, in which the value of the contour error is expanded around the reference points and the compensation components are calculated as the deviations from the reference points. Simulations show that, with perfect knowledge of the axial dynamics, zero contour errors can be achieved with TSEEC for both linear and circular contours. Due to modeling errors, external disturbances, and measurement noise, some modifications and experimentation need to be made to determine suitable parameters for implementation of the TSEEC scheme on a real machine. These measurements include a low-pass filter, a choice of a compensation target, and a compensation gain. Experimental results show the effectiveness of TSEEC in reducing contour errors and demonstrate the superiority of TSEEC over inverse feedforward compensation and cross-coupled control in improving the contouring accuracy.
机译:本文提出了一种基于模型的新型泰勒级数展开误差补偿(TSEEC)策略,以提高计算机数控(CNC)机的轮廓精度。在TSEEC中,轮廓误差补偿问题被表述为泰勒级数展开问题,其中轮廓误差的值围绕参考点展开,并且补偿分量被计算为与参考点的偏差。仿真表明,凭借对轴向动力学的全面了解,TSEEC可以针对线性和圆形轮廓实现零轮廓误差。由于建模误差,外部干扰和测量噪声,需要进行一些修改和实验,以确定适合在实际机器上实施TSEEC方案的参数。这些测量包括低通滤波器,补偿目标的选择和补偿增益。实验结果证明了TSEEC在减少轮廓误差方面的有效性,并证明了TSEEC在改善轮廓加工精度方面优于逆前馈补偿和交叉耦合控制。

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