The Application of the Hilbert Transformer for Measuring of the Reactive Power

A. Serov, N. Serov, A. Lupachev
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引用次数: 3

Abstract

As is known, the reactive power of the signal can be determined by the phase shift of one of the signals to ${\pi}/2$ radians and the subsequent application of the active power measurement algorithm. The time delay units, integrators and differentiators are used in practice to perform phase shift. However, the application of these devices is limited by the requirement of sinusoidal input signals. This paper consider the method of phase shift of one of the signals to ${\pi}/2$ radian by using a digital Hilbert transformer. The application of this method allows to measure reactive power for polyharmonic input signals at the required frequency band. The effect of the order of the Hilbert transformer on the measurement error of reactive power is considered. A comparison of the digital implementation of the Hilbert transformer using the IIR-type digital filters and IIR-type digital filters is performed. The obtained analytical expression allows to estimate the error of measurement of reactive power due to the frequency deviation and phase response of the Hilbert transformer from the nominal value. Popular method of measuring of the active power based on the averaging of instantaneous power is considered. The analytical expressions relating the input signal frequency deviation and the measurement error of reactive power for the considered measurement methods are obtained. The validity of the obtained expressions is confirmed by simulation results of the mathematical modeling performed by the Simulink package software.
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希尔伯特变压器在无功功率测量中的应用
众所周知,信号的无功功率可以通过其中一个信号向${\pi}/2$弧度的相移以及随后应用有功功率测量算法来确定。在实际应用中,延时单元、积分器和微分器被用来实现相移。然而,这些器件的应用受到正弦输入信号要求的限制。本文研究了利用数字希尔伯特变压器将其中一个信号移相到${\pi}/2$弧度的方法。该方法的应用允许在所需频带测量多谐波输入信号的无功功率。考虑了希尔伯特变压器阶数对无功功率测量误差的影响。对采用iir型数字滤波器和iir型数字滤波器的希尔伯特变压器的数字实现进行了比较。所得到的解析表达式可以估计出由于希尔伯特变压器的频率偏差和相位响应导致的无功功率测量误差。考虑了基于瞬时功率平均的常用有功功率测量方法。得到了各种测量方法的输入信号频率偏差与无功测量误差的解析表达式。利用Simulink软件包进行数学建模的仿真结果验证了所得表达式的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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