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Frequency Adaptive Prefiltering Stage for Differentiation-Based Control of Shunt Active Filter Under Polluted Grid Conditions

机译:电网污染条件下分流有源滤波器基于差分控制的频率自适应预滤波级

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摘要

A differentiation-based control method for a shunt active power filter is used in this paper for functioning in the presence of grid voltages distortion and imbalances. To enable the fast and accurate estimation of the variables in the presence of unbalancing or distortion in the grid voltages, a prefiltering scheme is considered based on the dual second-order generalized integrator approach. The signal recomposition performed by the prefilter isolates the harmonics from the voltage and current waveforms, and the differentiator frequency locked loop (dFLL) is able to estimate the frequency of the waveforms, which is used as a feedback for the prefilter, thus making the system frequency adaptive. The control algorithm is validated with both simulation studies. The prototype of an active power filter is developed, which carried out current compensation robustly, demonstrating the speed and accuracy of the system even under distorted grid conditions by achieved total harmonic distortions (THDs) of the grid currents within limits (less than 5%) as dictated by IEEE Std. 519-2014.
机译:在电网电压失真和不平衡的情况下,本文采用了基于差分的并联有源电力滤波器控制方法。为了在电网电压不平衡或失真的情况下快速,准确地估计变量,基于双二阶广义积分器方法考虑了预滤波方案。预滤波器执行的信号重组将谐波从电压和电流波形中隔离出来,微分器锁频环(dFLL)能够估计波形的频率,用作预滤波器的反馈,从而使系统频率自适应。两种仿真研究均验证了该控制算法。有源功率滤波器的原型得以开发,该滤波器可对电流进行有力的补偿,即使在电网畸变的情况下,也能通过在限制范围内(小于5 )获得电网电流的总谐波失真(THD)来证明系统的速度和精度。 %),由IEEE标准规定。 519-2014。

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