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Study on the Frequency Compensation of the Dynamic Unbalance Signal Extraction for General Hard Bearing Dynamic Balancing Machine

机译:一般硬轴承动态平衡机的动态不平衡信号提取的频率补偿研究

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When a dynamic balancing measuring system is equipped with velocity sensor as its vibration pick-up, the output signal of the sensor is proportional to the third power of rotating speed of the balancing operation. Generally, a third order low-pass filter circuit is often used to eliminate the influence of rotating speed and suppress the high frequency interference as well. However, the frequency response of third order low-pass filter circuit can't compensate completely for the response characteristic of the vibration system of balancing machine, which then causes measuring error. So, as a general purpose hard bearing dynamic balancing machine being suitable for a wide speed range, frequency compensation must be conducted. The approach of frequency compensation is classified into two broad types: hardware and software compensation. This paper conducts further research on these two methods to improve the accuracy of the measuring system and proves the accuracy and effectiveness of the two methods by signal simulation and field experiments.
机译:当动态平衡测量系统配备速度传感器作为其振动拾取时,传感器的输出信号与平衡操作的旋转速度的第三功率成比例。通常,通常使用三阶低通滤波器电路来消除旋转速度的影响并抑制高频干扰。然而,第三阶低通滤波器电路的频率响应不能完全补偿平衡机的振动系统的响应特性,然后振动系统导致测量误差。因此,作为一种通用的硬轴承动态平衡机适用于宽速度范围,必须进行频率补偿。频率补偿的方法分为两种广泛类型:硬件和软件补偿。本文进行这两种方法进一步研究,以提高测量系统的准确度,并证明了两种方法通过信号仿真和现场试验的准确性和有效性。

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