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A Frequency Domain Approach for Tuning Control Parameters of CNC Servomotors to Enhance its Circular Contouring Accuracy

机译:调整数控伺服电机控制参数以提高其圆轮廓精度的频域方法

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The machining of a cone frustum as specified in National Aerospace Standard NAS-979 is a widely accepted test to evaluate the performance of five-axis machining centers. By measuring the cross-sectional circularity or roundness of the cone, the contouring accuracy of five-axis computer numerical control (CNC) can be evaluated. Thus, reduction of circularity is directly related to improvement of the contouring accuracy in circular motions. Most CNC actuators are AC servo motors that are precisely controlled via two closed loops—one each for position and velocity. The circular contouring accuracy of a five-axis CNC can be improved by adjusting the loop gains and the time constant of velocity loop integration. Although higher gains enable the servomotors to reach the desired positions faster, the resulting contouring accuracy may not be satisfactory. Furthermore, excessively high gains may cause vibrations. This paper proposes a frequency domain approach for tuning the control parameters for each axis so that their frequency responses are very similar, thus reducing the circularity value of the cross sections of a manufactured cone frustum. The paper also describes a method to obtain the frequency response of each axis by using properly engineered input chirp sine signals. Simulated results showing the effect of tuning the control loop parameters based on the frequency response of each axis are presented. Moreover, a case study was conducted to show the variation in the circularity value when the control parameters of each axis were tuned to obtain similar frequency responses of the linear and rotary axes within a frequency range.
机译:国家航空航天标准NAS-979中规定的圆锥台的加工是一项广泛接受的测试,用于评估五轴加工中心的性能。通过测量圆锥的横截面圆度或圆度,可以评估五轴计算机数控(CNC)的轮廓精度。因此,圆度的降低与圆周运动中轮廓精度的提高直接相关。大多数CNC执行器是交流伺服电机,通过两个闭环进行精确控制,每个闭环用于位置和速度。通过调整回路增益和速度回路积分的时间常数,可以提高五轴CNC的圆轮廓精度。尽管更高的增益可使伺服电机更快地到达所需位置,但最终的轮廓精度可能并不令人满意。此外,过高的增益可能会引起振动。本文提出了一种频域方法,用于调整每个轴的控制参数,以使它们的频率响应非常相似,从而减小了制成的圆锥台的横截面的圆度。本文还介绍了一种通过使用经过适当设计的输入线性调频正弦信号来获得每个轴的频率响应的方法。仿真结果显示了基于每个轴的频率响应调整控制环参数的效果。此外,还进行了案例研究,显示了当调整每个轴的控制参数以获得线性和旋转轴在一个频率范围内的相似频率响应时,圆度值的变化。

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