补偿时间间隔测量的精度误差

IF 0.5 Q4 PHYSICS, APPLIED Latvian Journal of Physics and Technical Sciences Pub Date : 2024-02-01 DOI:10.2478/lpts-2024-0005
V. Bespal’ko, A. Litvinenko, V. Stepanovs, V. Kurtenoks, V. Smetska, V. Lapkovskis
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引用次数: 0

摘要

研究了一种时间间隔精度误差补偿方法,可降低精度误差对测量间隔时间的依赖性,并最大限度地减少不稳定因素--环境温度变化和仪表时钟发生器频率与额定值的初始偏差--的影响。补偿方法以校准程序为基础,在环境温度变化的条件下测量精确的时间间隔。然后记录特定仪表的精度误差与温度的关系。根据这些数据,编制一个修正表,其中包含修正系数和确定这些系数的温度值。在实际测量条件下,根据表中的测量结果修正值确定与当前温度相对应的修正系数。包含修正因子值的表格可存储在仪表或处理计算机的内存中。该方法的实验验证表明,对配有标准 XO 级时钟发生器(经认证不稳定性为 ±50 ppm)的仪表进行修正,可获得 ±0.15 ppm 的等效时钟发生器不稳定性。在使用高端时钟来确保所需的测量精度在经济上不可行的情况下,该方法的应用非常有效。
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Compensation of Accuracy Error for Time Interval Measurements
A method of accuracy error compensation for the time interval is examined, allowing to decrease the dependence of accuracy error on the duration of measured intervals and minimising the influence of destabilising factors – ambient temperature changes and the initial deviation of the meter clock generator frequency from the nominal value. The compensation method is based on a calibration procedure that measures precise time intervals under conditions of changing ambient temperature. Then the dependence of the accuracy error on temperature for a particular meter is recorded. Based on these data, a correction table is compiled containing correction factors and temperature values at which these factors were determined. Under real measurement conditions, the correction factor corresponding to the current temperature is determined from the table for measured result correction. The table with correction factor values could be stored in the memory of the meter or processing computer. Experimental verification of the method showed that applying a correction for a meter with a standard XO class clock generator (certificated instability of ±50 ppm) could obtain an equivalent clock generator instability of ±0.15 ppm. The application of the method is efficient in cases where the use of high-end clocking to ensure the required measurement accuracy is not economically feasible.
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来源期刊
CiteScore
1.50
自引率
16.70%
发文量
41
审稿时长
5 weeks
期刊介绍: Latvian Journal of Physics and Technical Sciences (Latvijas Fizikas un Tehnisko Zinātņu Žurnāls) publishes experimental and theoretical papers containing results not published previously and review articles. Its scope includes Energy and Power, Energy Engineering, Energy Policy and Economics, Physical Sciences, Physics and Applied Physics in Engineering, Astronomy and Spectroscopy.
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