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Design and implementation of differential AC voltage sampling system based on PJVS

机译:基于PJV的差分交流电压采样系统的设计与实现

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摘要

First, a differential sampling measurement principle is introduced. Based on this principle, we have developed a precision differential sampling system to measure AC voltage with the use of a quantum-accurate AC Programmable Josephson Voltage Standard. The differential sampling system design adopts switching measurement technology. By analysing the error source of the differential sampling system, a mathematical model is established, and the error transfer function is derived. We have performed a variety of measurements to evaluate this differential sampling system. First, the transition is analysed, and the selection scheme of the sampling window is described. After averaging, the uncertainty obtained in the determination of Fluke 5720A 1 V RMS amplitude sine wave at 60 Hz is 0.3 mu V/V (type A); the uncertainty obtained in the determination of PJVS 1 V RMS amplitude sine wave at 60 Hz is 0.05 mu V/V (type A).
机译:首先,介绍了差动采样测量原理。 基于这一原理,我们开发了一种精密差分采样系统,用于测量AC电压,随着量子准确的AC可编程Josephse电压标准。 差分采样系统设计采用开关测量技术。 通过分析差分采样系统的误差源,建立了数学模型,导出了错误传输函数。 我们已经进行了各种测量来评估这种差动采样系统。 首先,分析转换,并描述采样窗口的选择方案。 在平均后,在60Hz的荧光5720A 1V rms幅度正弦波中获得的不确定度为0.3μV/ v(A型); 在60Hz的测定中获得的不确定度在60Hz的PJV 1 V rms幅度正弦波中为0.05μmV/ v(A型)。

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