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Algorithm based on TDC to estimate and calibrate delay between channels of high-speed data acquisition system

机译:基于TDC估计和校准高速数据采集系统信道延迟的算法

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As the modern electronic system becomes more complicated, the new situations and works require a data acquisition system with a more accurate time parameter. Time delay between channels of high-speed data acquisition system is an important time parameter to estimate and adjust. In high-speed data acquisition system, the ADC data output time is not fixed, and may lead to the delay time of each acquisition channel generated. In order to solve this problem, an algorithm based on TDC is proposed to estimate and calibrate the delay. The algorithm is based on the truth that the sampled data and the data synchronized clock of ADC are synchronized. So phase relationship of the data synchronized clocks can represent the delay between channels. Time-stretched Time-Digital-Converter (TDC) is used to measure the phase difference of the data synchronized clocks. The experiment result proves that the algorithm is faster than four-parameter sine wave fitting, and has a high accuracy up to 100ps.
机译:由于现代电子系统变得更加复杂,新的情况和作品需要具有更准确的时间参数的数据采集系统。高速数据采集系统通道之间的时间延迟是估计和调整的重要时间参数。在高速数据采集系统中,ADC数据输出时间未固定,并且可能导致生成的每个采集信道的延迟时间。为了解决这个问题,提出了一种基于TDC的算法来估计和校准延迟。该算法基于所采样的数据和ADC的数据同步时钟同步的真实性。所以数据同步时钟的相位关系可以表示通道之间的延迟。时间拉伸时间 - 数字转换器(TDC)用于测量数据同步时钟的相位差。实验结果证明,算法比四参数正弦波配件更快,高精度高达100ps。

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