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Dynamic model of NC rotary table in angle measurements with time series

机译:具有时间序列的角度测量中的NC转台动力学模型

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摘要

In this study, a dynamic model of absolute time grating, a novel kind of displacement sensor, is established in order to apply the absolute time grating sensor, instead of the optical grating sensor, as an angle encoder to the full closed-loop numerical control (NC) rotary table. Time series analysis is employed in the dynamic model, and given the series of past measured angles, therefore, the dynamic model can be used to forecast the next future measured angle. As a result, the original absolute signal sampled in equal time intervals of an absolute time grating sensor can be transformed into continuous incremental pulses for a full closed-loop NC rotary table. When the current angle is deduced, the latest measured angle of the time series is interpolated as standard quantity to compensate for the last forecast error. In this way, the forecast error can be corrected between neighboring sampling periods, and cumulative errors can be eliminated. The forecasting accuracy of incremental pulses for the time grating sensor can reach ±3" which validates the dynamic model in improving the performance of the time grating displacement sensor in dynamic measurement.
机译:在这项研究中,建立了一种绝对时间光栅的动态模型,一种新型的位移传感器,以便将绝对时间光栅传感器(而不是光学光栅传感器)用作角度编码器用于全闭环数控系统(NC)转台。动态模型中采用了时间序列分析,并给出了过去测量角度的序列,因此,该动态模型可用于预测下一个未来测量角度。结果,可以将在绝对时间光栅传感器的相等时间间隔内采样的原始绝对信号转换为完整的闭环NC转台的连续增量脉冲。推导出当前角度后,将时间序列的最新测量角度作为标准量进行插值,以补偿最后的预测误差。这样,可以在相邻采样周期之间校正预测误差,并且可以消除累积误差。时间光栅传感器的增量脉冲的预测精度可以达到±3英寸,这在改进动态测量中的时间光栅位移传感器性能方面验证了该动态模型。

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