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A HIGH-PRECISION COUNTER USING THE DSP TECHNIQUE

机译:使用DSP技术的高精度计数器

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摘要

A high-precision counter using a digital signal processor (DSP) is designed for phase and frequency measurement. We use an analog-to-digital converter (ADC) to sample the device under test (DUT). Once the signal is digitized, the DSP will be used to run the phase correlation and obtain the necessary information. In our design, the counter is implemented on the Texas Instrument (TI) TMS329C6201 digital signal processor. The sample data from the ADC are input to the DSP. Additionally, the 5 MHz frequency from the Telecommunication Laboratories (TL) standard is used as the reference of the synthesized signal generator. Then the synthesized signal generator produces the specific frequency in the ADC to serve as the reference clock. The ADC will then sample the signal of the DUT. The frequency difference between the signal and the specific frequency of the synthesized signal generator is approximately 1 Hz and the floating part of the frequency produced by the DUT. In the DSP, the phase correlation is created for finding the floating part of the frequency. The 1-second sampling data are correlated with the next second’s. The result of the correlation operation can produce the phase shift in a 1- second interval. Finally, we can determine the frequency difference between the DUT and the reference clock of the ADC. The resolution of the frequency accuracy can be 5×10~(-12).
机译:使用数字信号处理器(DSP)的高精度计数器设计用于相位和频率测量。我们使用模数转换器(ADC)来对测试(DUT)的设备进行采样。一旦信号被数字化,DSP将用于运行相位相关并获得必要的信息。在我们的设计中,计数器在德克萨斯乐器(TI)TMS329C6201数字信号处理器上实现。来自ADC的示例数据输入DSP。此外,来自电信实验室(TL)标准的5 MHz频率用作合成信号发生器的参考。然后,合成信号发生器在ADC中产生特定频率以用作参考时钟。然后,ADC将对DUT的信号进行采样。信号和合成信号发生器的特定频率之间的频率差约为1Hz,并且由DUT产生的频率的浮动部分。在DSP中,创建相位相关用于查找频率的浮动部分。 1秒的采样数据与下一秒相关联。相关操作的结果可以以1-第二间隔产生相移。最后,我们可以确定DUT与ADC的参考时钟之间的频率差。频率精度的分辨率可以是5×10〜(-12)。

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