减少精密正交电桥中发电机参数偏差的影响

P.I. Borchshov, O. Lameko, V. Melnyk
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摘要

文章致力于解决工频电容量标准的验证问题。通过与有源电阻标准参数的比较,指出了使用交流正交电桥确定工业频率下电容量标准参数的适宜性。使用高输入阻抗电桥不平衡指示器的优势在于可以减少电源电压高次谐波的影响。对减少发电机参数与计算参数偏差引起的测量误差的著名方法进行了分析。结果表明,当发电机参数偏差增大以及电桥偏离平衡状态的偏差增大时,已知方法无法充分补偿这些误差的影响。我们提出了一种迭代算法,用于计算比较标准的阻抗比与标称值的测量偏差。给出了计算测量值的数学表达式。对不同发电机电压偏差值的测量误差分量进行了计算。计算针对发电机电压变化的两种实施方案:乘法电压幅值变化和加法电压相位变化。所开发的迭代修正方法只需少量的迭代步骤就能将指定误差降低到所需的水平--在绝大多数情况下,两个步骤就足够了。应用该方法可以在电桥发生器电压比偏差相当大的情况下获得较高的计量特性,这使得在实施用于比较电容和有源电阻标准的正交交流电桥时降低硬件成本成为可能。参考文献 15,图 1,表 1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
REDUCTION OF THE INFLUENCE OF DEVIATIONS OF GENERATOR PARAMETERS IN PRECISION QUADRATURE BRIDGES
The article is devoted to solving the problem of attestation of electric capacity standards at industrial frequency. The expediency of using a quadrature bridge of alternating current to determine the parameters of standards of electric capacity at industrial frequency by comparison with the parameters of standards of active resistance was noted. The advantage of using a bridge imbalance indicator with high input impedance is shown, which consists in the possibility of reducing the influence of higher harmonics of the supply voltages. An analysis of the well-known method of reducing of measurement errors caused by the deviation of the generator parameters from the calculated ones was carried out. It is shown that the known method does not provide sufficient compensation for the influence of these errors when the deviations of the generator parameters increase, as well as when the deviations of the bridge from the balance state increase. An iterative algorithm for calculating the measured deviation of the impedance ratio of the compared standards from the nominal value is proposed. Mathematical expressions for calculating the measured quantity are given. Calculations of the components of the measurement error for different values of generator voltage deviations were carried out. Calculations were performed for two variants of generator voltage variation implementation: multiplicative voltage amplitude variation and additive voltage phase variation. The developed iterative correction method allows to reduce the specified errors to the required levels in a small number of iteration steps - in the vast majority of cases, two steps are enough. The application of the method allows obtaining high metrological characteristics with rather large deviations of the voltage ratio of bridge generators, which makes it possible to reduce hardware costs when implementing quadrature alternating current bridges for comparing capacitance and active resistance standards. References 15, figure 1, table 1.
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