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Comparative evaluations of frequency response analysis methods for fast and precise point-to-point position control

机译:用于快速精确点对点位置控制的频率响应分析方法的比较评估

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This paper examines frequency response analysis (FRA) methods using transient response signals in actual operation, for the fast and precise point-to-point position control of industrial servo systems. In industrial processing/manufacturing machines, the enormous fast and precise point-to-point trials are conducted with varieties of interval times, and parameter fluctuations of plants occur due to the self-heating, environment temperature variation, and aged deterioration. Therefore, FRA methods using the transient response signals in operation (e.g. force and position) are required to adaptation of controllers, stability analyses, and abnormal diagnoses. However, since initial and final values of the transient response signals are not the same in general in the point-to-point motion, it is difficult to analyze the accurate frequency characteristic of plant directly through the discrete Fourier transform (DFT)-based FRA. In this study, three practical FRA methods (windowing function, bandpass filter, and differentiator) are comparatively evaluated to examine the appropriate FRA method for the fast and precise servo systems. The comparative evaluations are conducted by experiments using a laboratory prototype galvano scanner.
机译:本文研究了在实际操作中使用瞬态响应信号的频率响应分析(FRA)方法,以实现工业伺服系统的快速,精确的点对点位置控制。在工业加工/制造机器中,要进行各种间隔时间的快速而精确的点对点试验,并且由于自热,环境温度变化和老化而导致设备参数波动。因此,需要在操作中使用瞬态响应信号(例如力和位置)的FRA方法来适应控制器,进行稳定性分析和异常诊断。但是,由于瞬态响应信号的初始值和最终值通常在点对点运动中并不相同,因此很难直接通过基于离散傅里叶变换(DFT)的FRA分析植物的准确频率特性。在这项研究中,对三种实用的FRA方法(窗函数,带通滤波器和微分器)进行了比较评估,以检查适用于快速精确伺服系统的FRA方法。比较评估是使用实验室原型电扫描仪通过实验进行的。

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