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Frequency estimation of distorted power system signals using extended complex Kalman filter

机译:使用扩展复数卡尔曼滤波器的电力系统失真信号的频率估计

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The paper proposes an extended complex Kalman filter and employs it for the estimation of power system frequency in the presence of random noise and distortions. From the discrete values of the 3-phase voltage signals of a power system, a complex voltage vector is formed using the well known /spl alpha//spl beta/-transform. A nonlinear state space formulation is then obtained for this complex signal and an extended Kalman filtering approach is used to compute the true state of the model iteratively with significant noise and harmonic distortions. As the frequency is modeled as a state, the estimation of the state vector yields the unknown power system frequency. Several computer simulations test results are presented in the paper to highlight the usefulness of this approach in estimating near nominal and off-nominal power system frequencies.
机译:本文提出了一种扩展的复杂卡尔曼滤波器,并将其用于在存在随机噪声和失真的情况下估计电力系统的频率。根据电力系统三相电压信号的离散值,使用众所周知的/ spl alpha // spl beta /-变换可形成复数电压矢量。然后,针对该复杂信号获得非线性状态空间公式,并使用扩展的卡尔曼滤波方法来迭代地计算模型的真实状态,并产生明显的噪声和谐波失真。由于将频率建模为状态,因此状态向量的估计会得出未知的电源系统频率。本文中提供了一些计算机仿真测试结果,以突出此方法在估算接近标称和非标称功率系统频率时的有用性。

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