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Analytical discrete Fourier transformer-based phasor estimation method for reducing transient impact of capacitor voltage transformer

机译:基于解析傅立​​叶互感器的相量估计方法,减少电容器变压器的暂态冲击

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摘要

The output voltage of capacitor voltage transformer (CVT) is highly influential during initiation of contingencies due to its transient behaviour. This study proposes a novel method for fundamental component phasor estimation which reduces the transient impact of CVT. The proposed method (PM) first, based on hybrid full-cycle averaging window and also least squares (LS) technique, calculates the transient components of the CVT. In the next stage, by subtracting estimated transient behaviour from fault voltage signal, the fundamental phasor component of the obtained signal can be estimated utilising discrete Fourier transformer (DFT). Also, in order to prevent instability due to off-nominal frequency sampling rate, DFT formulation is improved. Several case studies have been carried out in order to show the robustness of the PM in the realistic simulation scenarios. Results show that the PM given in this study is able to estimate fundamental phasor voltage fault signal quickly and precisely with ignorable effect from transient impacts of CVT in almost always one cycle after fault occurrence.
机译:电容器电压互感器(CVT)的输出电压由于其瞬态行为而在突发事件期间具有很大的影响力。这项研究提出了一种新的基本分量相量估计方法,该方法可减少CVT的瞬态影响。首先,基于混合全周期平均窗口和最小二乘(LS)技术,提出的方法(PM)计算出CVT的瞬态分量。在下一阶段,通过从故障电压信号中减去估计的瞬态行为,可以使用离散傅立叶变压器(DFT)来估计获得的信号的基本相量分​​量。另外,为了防止由于非标称频率采样率引起的不稳定性,改进了DFT公式。为了表明PM在实际仿真场景中的鲁棒性,已经进行了一些案例研究。结果表明,本研究中给出的PM能够快速,精确地估计基本相量电压故障信号,而在故障发生后几乎总是在一个周期内,由于CVT的瞬态影响,其可忽略的影响就不明显了。

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