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Allan Variances and Spectral Densities for DC Voltage Measurements With Polarity Reversals

机译:具有极性反转的直流电压测量的艾伦方差和频谱密度

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摘要

Using a polarity reversal technique, precise dc voltage measurements were made with both digital and analog voltmeters. The results were analyzed by calculating Allan variances and spectral densities for polarity-reversed measurements and comparing them with similar analyses of unreversed or unipolar measurements of the same processes. The Allan variances and spectra for the two measurement methods were found to agree quite well, particularly for sampling times corresponding to the 1/f noise regime for the measurement of Zener-diode voltages. The results show that polarity reversals do not affect 1/f noise of the Zeners. In polarity-reversed measurements, a rectangular voltage waveform is presented to the detector. Since this waveform can be synthesized by ac waveforms, the results also demonstrate that ac detection does not remove 1/f noise in the voltage source being measured. We also estimated the spectral density and Allan variance of some thermal (Johnson) noise processes and found that the results agree with the Nyquist expression to within 4%. This provides direct validation of our measurement and analysis methods.
机译:使用极性反转技术,可以同时使用数字电压表和模拟电压表进行精确的直流电压测量。通过计算极性反转测量的艾伦方差和光谱密度,并将其与相同过程的未反转或单极性测量的类似分析进行比较,来分析结果。发现这两种测量方法的艾伦方差和频谱非常吻合,特别是对于与用于测量齐纳二极管电压的1 / f噪声状态相对应的采样时间。结果表明,极性反转不会影响齐纳二极管的1 / f噪声。在极性相反的测量中,矩形电压波形会呈现给检测器。由于可以通过交流波形合成该波形,因此结果还表明,交流检测不能消除被测电压源中的1 / f噪声。我们还估计了某些热(约翰逊)噪声过程的频谱密度和艾伦方差,发现结果与奈奎斯特表达式一致,误差在4%以内。这可以直接验证我们的测量和分析方法。

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