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Uncertainties in the Measurement of AC Voltage Using a Programmable Josephson Voltage Standard and a Phase-Sensitive Null Detector

机译:使用可编程约瑟夫森电压标准和相敏零检测器测量交流电压的不确定性

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Providing the traceability of alternating-current (ac) voltage measurements by means of a stepwise-approximated sine wave (SASW) produced by a programmable Josephson voltage standard (PJVS) is an attractive alternative to the conventional ac voltage standards based on thermal voltage converters, because a programmable Josephson standard has a calculable output voltage that does not drift with time. This paper investigates two aspects of uncertainties in the measurement of ac voltage using a sine wave generated by a PJVS with a lock-in amplifier as a null detector. First, the uncertainty introduced by transitions between successive voltage levels of the SASW on the fundamental and root-mean-square values is examined. Second, the lock-in amplifier response to the harmonics of this synthesized sine wave is discussed. Experimental evaluation shows that harmonics that are not rejected by the lock-in amplifier can cause a systematic error when measuring the ac–direct-current difference of a thermal converter with the synthesized sine wave from 0.5 to 3.0 $mu hbox{V/V}$, depending on the number of samples per period of the SASW. Furthermore, it is shown that this error can be reduced to 0.3 $muhbox{V/V}$ by calibrating the lock-in amplifier using a distorted signal having a similar harmonic content to the synthesized sine wave.
机译:通过可编程的约瑟夫森电压标准(PJVS)产生的逐步逼近正弦波(SASW)提供交流(ac)电压测量的可追溯性,是基于热电压转换器的传统交流电压标准的一种有吸引力的替代方案,因为可编程的Josephson标准具有可计算的输出电压,不会随时间漂移。本文研究了使用锁定放大器作为零检测器的PJVS产生的正弦波测量交流电压时的不确定性的两个方面。首先,检查由基本和均方根值上的SASW的连续电压电平之间的过渡引入的不确定性。其次,讨论了锁相放大器对这种合成正弦波的谐波的响应。实验评估表明,在合成正弦波范围为0.5至3.0的情况下,用合成正弦波测量热转换器的交流-直流电差时,未被锁相放大器抑制的谐波会引起系统误差。 $,取决于SASW每个周期的样本数量。此外,示出了通过使用具有与合成正弦波相似的谐波含量的失真信号来校准锁定放大器,可以将该误差降低到0.3μmuhbox{V / V} $。

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