Detection of voltage sag using unscented Kalman smoother

E. Siavashi, A. Rouhani, Ramin Moslemi
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引用次数: 6

Abstract

A novel method based on Kalman algorithm is proposed in this paper to estimate the amplitude and the time duration of voltage sag in power systems. The new method uses the unscented transform and the RTS algorithm to have a smoother and optimal tracking response. A nonlinear model of the system is developed and the mathematics of the method is derived for a supposed power signal. The algorithm is simulated in MATLAB with the assumption of a measured voltage with low-order harmonics and in presence of a noise with SNR of 10. Simulation results show that the proposed method performs with a smooth, fast dynamic and tracking response in present of noise and harmonics. The accuracy of the method is also better in comparison with other Kalman based algorithms.
无气味卡尔曼平滑检测电压暂降
提出了一种基于卡尔曼算法的电力系统电压暂降幅度和持续时间估计方法。该方法采用了unscented变换和RTS算法,使跟踪响应更平滑、更优。建立了系统的非线性模型,推导了该方法在假定功率信号下的数学表达式。在MATLAB中对该算法进行了仿真,假设测量电压为低次谐波,并且存在信噪比为10的噪声。仿真结果表明,在噪声和谐波存在的情况下,该方法具有平滑、快速的动态响应和跟踪特性。与其他基于卡尔曼的算法相比,该方法的精度也有所提高。
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