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A Harmonic Detection Strategy Based on FBD Power Theory

机译:基于FBD功率理论的谐波检测策略

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The stability, safety and economic operation of the power system are threated by harmonic pollution. Moreover, a series of harmonic currents and unbalanced load currents are affecting the power quality seriously. The active power filter is mainly used to compensate the harmonic current. However, the compensation effect is affected by the dynamic response speed of harmonic current detection. In this paper, the FBD(Fryze-Buchholz-Dpenbrock) theory and its derived harmonic detection method, and the deficiency in dynamic response of the low-pass filter and the Moving Average Filter (MAF) are introduced and analysied, respectivly. Then, an improved Generalized Moving Average Filter (GMAF) is proposed to improve the dynamic response speed of harmonic detection. Finally, based on FBD power theory, a single-phase and three-phase simulation model is built in MATLAB/Simulink, and the simulation results of two methods under steady state and load current mutation are given, and the characteristics of GMAF's dynamic response speed are verified.
机译:电力系统的稳定性,安全性和经济运行受到谐波污染的威胁。此外,一系列谐波电流和不平衡负载电流严重影响了电能质量。有源电力滤波器主要用于补偿谐波电流。但是,补偿效果受谐波电流检测的动态响应速度影响。本文分别介绍和分析了FBD(Fryze-Buchholz-Dpenbrock)理论及其推导的谐波检测方法,以及低通滤波器和移动平均滤波器(MAF)在动态响应方面的不足。然后,提出了一种改进的广义移动平均滤波器(GMAF),以提高谐波检测的动态响应速度。最后,基于FBD功率理论,在MATLAB / Simulink中建立了单相和三相仿真模型,给出了稳态和负载电流突变两种方法的仿真结果,并给出了GMAF动态响应速度的特点。经过验证。

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