电压电流采样不同步对有功功率测量误差影响的估计

A. Serov, K. A. Ivanenko, Sergey A. Podobuev, Liliya S. Serdyukova, A. Shatokhin
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引用次数: 0

摘要

为了测量功率参数,采用了两个测量通道:电压和电流。为了准确测量有功功率参数,电压和电流样品必须及时同步。每个测量通道都包含adc,由于其不完善,存在一个信号相对于另一个信号的采样延迟。这会导致有功功率误差。这种偏差的两个组成部分可以区分为:恒定的(光圈时间)和可变的(光圈抖动)。本文考虑了电流、电压采样不同步导致的有功功率参数测量误差。由孔径抖动和孔径时间误差分量得到了解析误差表达式。考虑了信号参数(幅值、初始相位、采样频率、测量时间、采样次数、相移)对有功功率误差的影响。考虑了用密度为正态分布和均匀分布的随机函数表示孔径弹跳的情况。结果表明,在均匀分布密度情况下,有功功率误差较大。
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Estimation of the Effect of Non-Synchronization of Voltage and Current Samples on the Active Power Measurement Error
To measure power parameters, two measurement channels are applied: voltage and current. For accurate measurement of active power parameters, the voltage and current samples must be synchronized in time. Each of the measurement channels contains ADCs, due to the imperfection of which there is a delay of the samples of one signal relative to another. This causes the active power error. Two components of this deviation can be distinguished: constant (aperture time) and variable (aperture jitter) in time. The paper considers the measurement error of active power parameters due to non-synchronization of current and voltage samples. Analytical error expressions are obtained from the aperture jitter and aperture time error components. The influence of signal parameters (amplitude values, initial phases, sampling frequency, measurement time, sample number, phase shift) on the active power error is considered. The case of aperture bounce representation by means of a random function with normal and uniform distribution density is considered. It is shown that for the case of a uniform distribution density, the active power error is higher.
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