Frequency adaptive linear Kalman filter for fast and accurate estimation of grid voltage parameters

M. Reza, M. Ciobotaru, V. Agelidis
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引用次数: 10

Abstract

This paper presents a comparative analysis of three different quadrature signal generators such as the frequency locked loop (FLL) based linear Kalman filter (LKF) (LKF-FLL), the second order generalized integrator (SOGI) and FLL based quadrature signal generator (QSG) (SOGI-FLL) and the extended Kalman filter (EKF). In the LKF-FLL technique, the FLL is integrated with the LKF, where the LKF tracks the orthogonal waveforms of the gird voltage fundamental component based on the fundamental frequency estimated by the FLL. The LKF-FLL technique provides better steady state results and also takes smaller convergence time during the transients as compared to the SOGI-FLL and the EKF techniques. Moreover, the LKF-FLL technique is less complex than the EKF. Synthetically generated grid voltage waveforms are used in MATLAB/Simulink to depict the superior performance of the LKF-FLL technique.
频率自适应线性卡尔曼滤波用于快速准确地估计电网电压参数
本文对基于锁频环(FLL)的线性卡尔曼滤波器(LKF) (LKF-FLL)、二阶广义积分器(SOGI)和基于锁频环(FLL)的正交信号发生器(QSG) (SOGI-FLL)和扩展卡尔曼滤波器(EKF)三种不同的正交信号发生器进行了比较分析。在LKF-FLL技术中,FLL与LKF相结合,其中LKF根据FLL估计的基频跟踪电网电压基频分量的正交波形。与SOGI-FLL和EKF技术相比,LKF-FLL技术提供了更好的稳态结果,并且在瞬态期间的收敛时间也更短。此外,LKF-FLL技术比EKF技术更简单。在MATLAB/Simulink中使用综合生成的电网电压波形来描述LKF-FLL技术的优越性能。
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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