Harmonic distortion calibrator: additional uncertainty due to distortion in the measurement cable

S. V. Bezdenezhnykh, K. A. Stal’nova
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Abstract

The role of measuring instruments of the reference level (working standards of the 1st and 2nd digits) in ensuring the uniformity of measurements of the harmonic coefficient is considered, namely, the transfer of a unit of the harmonic coefficient from the primary standard to all measuring instruments from a huge fleet of working measuring instruments. A continuous search for ways to reduce the error of these measuring instruments is required. The methods of reducing one of the components of the measurement error of the reference level – an additional error caused by distortions in the measuring cable due to a mismatch of the resistances at the output of the calibrator and the input of the meter – are investigated. Until recently, the influence of measuring cable parameters on the results of harmonic coefficient measurements was considered negligible, because harmonic coefficient measuring instruments operate at sufficiently low frequencies (less than 1 MHz). However, for modern reference-level measuring instruments, such an influence has become noticeable, and it needs to be investigated. It has been shown that for calibrators with a large (600 Ohm) output impedance, significantly exceeding the characteristic impedance of the measuring cable, this error can be significant. An analytical dependence of the indicated error on the parameters of the measuring cable and the calibrator signal, as well as the output resistance of the calibrator, is derived. Conditions have been established under which this additional error is absent or can be neglected due to its smallness. When checking harmonic coefficient measuring instruments, a measuring cable 1 m long with a characteristic impedance of 50 Ohms is most often used. For a cable with such parameters and different values of the output resistance of the calibrator, the indicated additional error was theoretically calculated and experimentally evaluated. For a signal with a fundamental frequency of 200 kHz and a uniformly decreasing distribution of harmonic levels with a calibrator output impedance of 600 Ohms, the additional absolute error in generating a harmonic distortion equal to 100 % is 3 %. The use of factory correction for the total error in the formation of the harmonic distortion coefficient of the manufactured calibrator allows us to reduce the additional error only partially. To significantly minimize the additional error of the calibrator used, it is necessary to use the measuring cable supplied with the calibrator or a cable with identical parameters. The experimental estimate of the additional error is in good agreement with the results of its calculations. It is recommended to take into account the additional absolute error in the formation of the harmonic coefficient when developing and testing instruments for measuring the harmonic coefficient.
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谐波失真校准器:测量电缆失真导致的额外不确定性
研究了基准级测量仪器(第 1 位和第 2 位的工作标准)在确保谐波系数测量一致性方面的作用,即从一级标准中将谐波系数的一个单位转移到由大量工作测量仪器组成的所有测量仪器上。需要不断寻找减少这些测量仪器误差的方法。减少参考水平测量误差的一个组成部分--由于校准器输出端和仪表输入端的电阻不匹配而导致测量电缆失真引起的额外误差--的方法正在研究之中。直到最近,人们还认为测量电缆参数对谐波系数测量结果的影响可以忽略不计,因为谐波系数测量仪器的工作频率非常低(低于 1 MHz)。然而,对于现代参考级测量仪器而言,这种影响已变得非常明显,因此需要对其进行研究。研究表明,对于输出阻抗较大(600 欧姆),明显超过测量电缆特性阻抗的校准器来说,这种误差可能会很大。分析得出了指示误差与测量电缆和校准器信号参数以及校准器输出阻抗的关系。已经确定了一些条件,在这些条件下不会产生额外误差,或者由于误差很小而可以忽略不计。在检查谐波系数测量仪器时,通常使用特性阻抗为 50 欧姆、长 1 米的测量电缆。对于具有此类参数的电缆和校准器的不同输出电阻值,所显示的额外误差是通过理论计算和实验评估得出的。对于基频为 200 kHz、谐波电平分布均匀递减、校准器输出阻抗为 600 欧姆的信号,产生 100 % 谐波失真的额外绝对误差为 3 %。利用工厂对校准器谐波失真系数形成过程中的总误差进行修正,只能部分减少额外误差。要大幅减少校准器的附加误差,必须使用校准器随附的测量电缆或参数相同的电缆。附加误差的实验估计值与计算结果十分吻合。建议在开发和测试谐波系数测量仪器时,考虑谐波系数形成过程中的额外绝对误差。
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