Grid voltage offset and harmonics rejection using second order generalized integrator and kalman filter technique

M. S. Reza, M. Ciobotaru, V. Agelidis
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引用次数: 26

Abstract

This paper proposes the application of second order generalized integrator (SOGI) and Kalman filter (KF) technique for the rejection of DC offset and harmonics from the distorted grid voltage waveform. The SOGI is used to estimate the orthogonal waveforms of grid voltage fundamental frequency component. On the other hand, the linear Kalman filter (LKF) is used to reject the DC offset and harmonics present in the distorted grid voltage waveform. The resonance and harmonic frequencies of the SOGI and LKF, respectively, are provided by the frequency locked loop (FLL). The proposed technique provides better results to reject the DC offset and harmonics as compared to the multiple SOGI (MSOGI) technique. The improved performance of the proposed technique is due to the use of LKF which not only rejects the DC offset and harmonics but also non-sensitive to the change of SOGI's gain. Synthetically generated grid voltage waveforms are used in MATLAB/Simulink to depict the superior performance of the proposed SOGI-LKF technique as compared to the MSOGI with/without offset rejection technique.
利用二阶广义积分器和卡尔曼滤波技术进行电网电压偏移和谐波抑制
本文提出应用二阶广义积分器(SOGI)和卡尔曼滤波(KF)技术抑制电网电压畸变波形中的直流偏置和谐波。用SOGI估计电网电压基频分量的正交波形。另一方面,线性卡尔曼滤波器(LKF)用于抑制失真电网电压波形中的直流偏置和谐波。SOGI和LKF的谐振频率和谐波频率分别由锁频环(FLL)提供。与多重SOGI (MSOGI)技术相比,该技术具有更好的抑制直流偏置和谐波的效果。由于LKF不仅抑制了直流偏置和谐波,而且对SOGI增益的变化不敏感,因此该技术的性能得到了提高。在MATLAB/Simulink中使用综合生成的电网电压波形来描述所提出的SOGI-LKF技术与带/不带偏移抑制技术的MSOGI相比的优越性能。
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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