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Implementation of A New Digital Grating Angular Acceleration Measurement System Based on FPGA and Its Error Analysis

机译:基于FPGA的新型数字光栅角速度测量系统的实现及其误差分析

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Shaft angular acceleration is one of the most important parameter of rotary machines, the designation and implementation of a new angular acceleration measurement system is proposed in this paper. First, the speed signal is acquired through grating and infrared photocell, then interpolation speed signal with high-frequency pulses, so as to convert speed signals to pulses, last, angular acceleration is received by processing these pulses. This measurement system combined with FPGA and SCM, the function of FPGA are generating pulses, interpolating speed signal and counting the number of pulses, the result of count is processed by SCM. The high accuracy of measurement system is verified accord to the test.and the causes of errors are received by theoretical analysis.
机译:轴角加速度是旋转机器最重要的参数之一,本文提出了新的角度加速度测量系统的指定和实现。首先,通过光栅和红外光电池获取速度信号,然后通过高频脉冲的插值速度信号来获取,以便通过处理这些脉冲来将速度信号转换为脉冲,最后,接收角加速度。该测量系统与FPGA和SCM结合,FPGA的功能正在产生脉冲,内插速度信号并计数脉冲数,由SCM处理计数的结果。测量系统的高精度是符合测试的验证。通过理论分析接收到错误的原因。

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