A time and frequency measurement method based on delay-chain technique

Hai Wang, Wei Zhou, Zhiqi Li, Shixiang Qian, Weining Jiang, Chunxu Wang
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引用次数: 11

Abstract

The short time-interval and frequency measurement are main research projects in the measurement of time and frequency. Traditional measurement methods include direct counting, analog interpolating, time-to-voltage conversion, time vernier and time-to-digital conversion. However these methods are all complicated and the instruments based on these methods are expensive. A novel method for short time-interval and frequency measurement based on delay-chain technique is presented in this paper. This method utilizes measured short time-interval or measured frequency signal to generate count gate. A delay-chain is used to delay reference frequency signal orderly. So a group of signals with phase-shifting evenly in a period of reference frequency signal are generated, and are counted respectively under the same count gate. With the average of the counts as the count of reference frequency, the decimal counting error is reduced and measurement accuracy is improved. The measurement resolution of this method for short time-interval and measurement accuracy for frequency are equal to the measurement results under condition of increasing frequency of reference frequency signal by the times of the number of delay unit in a delay-chain. An experiment demonstrates the resolution of short time-interval measurement and the accuracy of frequency measurement could be 100 ps and respectively and the theoretical measurement resolution and accuracy could be higher. Although it needs more delay units and counters in order to achieve high-accuracy measurement, this is not a problem because new device has been used, such as FPGA. This method is suitable for high-accuracy and low-cost measurement..
一种基于延迟链技术的时频测量方法
短时间间隔和频率测量是时间频率测量的主要研究方向。传统的测量方法包括直接计数、模拟插值、时间-电压转换、时间游标和时间-数字转换。然而,这些方法都很复杂,基于这些方法的仪器也很昂贵。提出了一种基于延迟链技术的短时间间隔频率测量新方法。该方法利用测量的短时间间隔或测量的频率信号产生计数门。采用延迟链对参考频率信号进行有序延迟。这样就产生了一组在参考频率信号的一个周期内相移均匀的信号,并在同一计数门下分别进行计数。以这些计数的平均值作为基准频率计数,减小了十进制计数误差,提高了测量精度。该方法对短时间间隔的测量分辨率和频率的测量精度等于参考频率信号的频率增加到延迟链中延迟单元数倍的情况下的测量结果。实验表明,短时间间隔测量的分辨率和频率测量的精度可分别达到100 ps和100 ps,理论测量分辨率和精度更高。虽然它需要更多的延迟单元和计数器,以实现高精度的测量,这不是一个问题,因为已经使用了新的设备,如FPGA。该方法适用于高精度、低成本的测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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