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A Hybrid Active Filter Using the Backstepping Controller for Harmonic Current Compensation

机译:使用Backstepping控制器的混合有源滤波器用于谐波电流补偿

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This document presents a new hybrid combination of filters using passive and active elements because of the generalization in the use of non-linear loads that generate harmonics directly affecting the symmetry of energy transmission systems that influence the functioning of the electricity grid and, consequently, the deterioration of power quality. In this context, active power filters represent one of the best solutions for improving power quality and compensating harmonic currents to get a symmetrical waveform. In addition, given the importance and occupation of the transmission network, it is necessary to control the stability of the system. Traditionally, passive filters were used to improve energy quality, but they have endured problems such as resonance, fixed remuneration, etc. In order to mitigate these problems, a hybrid HAPF active power filter is proposed combining a parallel active filter and a passive filter controlled by a backstepping algorithm strategy. This control strategy is compared with two other methods, namely the classical PI control, and the fuzzy logic control in order to verify the effectiveness and the level of symmetry of the backstepping controller proposed for the HAPF. The proposed backstepping controller inspires the notion of stability in Lyapunov’s sense. This work is carried out to improve the performance of the HAPF by the backstepping command. It perfectly compensates the harmonics according to standards. The results of simulations performed under the Matlab/Simulink environment show the efficiency and robustness of the proposed backstepping controller applied on HAPF, compared to other control methods. The HAPF with the backstepping controller shows a significant decrease in the THD harmonic distortion rate.
机译:本文档介绍了使用无源和有源元件的新型滤波器组合,因为非线性负载的使用普遍化,非线性负载会产生谐波,直接影响能量传输系统的对称性,从而影响电网的功能,进而影响电网的运行。电能质量下降。在这种情况下,有源功率滤波器代表了改善功率质量和补偿谐波电流以获得对称波形的最佳解决方案之一。另外,鉴于传输网络的重要性和占用,有必要控制系统的稳定性。传统上,使用无源滤波器来提高能量质量,但是它们却存在诸如共振,固定报酬等问题。为了缓解这些问题,提出了一种混合HAPF有源功率滤波器,该滤波器将并联有源滤波器和受控无源滤波器组合在一起。通过后退算法策略。将该控制策略与其他两种方法(即经典PI控制和模糊逻辑控制)进行比较,以验证为HAPF提出的反推控制器的有效性和对称性。拟议中的后推控制器激发了李雅普诺夫的稳定性观念。通过执行backstepping命令可以提高HAPF的性能。它可以根据标准完美地补偿谐波。在Matlab / Simulink环境下进行的仿真结果表明,与其他控制方法相比,所提出的应用于HAPF的反推控制器的效率和鲁棒性更高。具有反推控制器的HAPF显着降低了THD谐波失真率。

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