Simulation and Real Time Implementation of Direct Power Control Applied to Parallel Active Filtering Based on Fuzzy Logic Controller

S. Ouchen, H. Steinhart, J. Gaubert, F. Blaabjerg, A. Betka
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引用次数: 2

Abstract

The present paper proposes a simulation and a real time implementation of a new fuzzy-direct power control (F-DPC) strategy for power quality improvement in shunt active power filter systems. The main objective of the proposed study is to reduce the total harmonic current distortion (THDi) and the instantaneous power ripple. This is done by the replacement of the hysteresis regulators by fuzzy logic rules. The basic idea of these rules is based on the knowledge of the variation in the active and reactive power. In respect to the input fuzzy variables and in a precise instant, the best switching state of the converter is chosen. The strength of this control strategy compared to the conventional DPC is that it is not required to introduce hysteresis controllers and strong control of active and reactive power is achieved. The proposed F-DPC control is simulated using Matlab/Simulink and experimentally validated on a small-scale system, controlled via a dSPACE 1104 single card. The obtained results indicate a closeness between simulation and experimental tests, which proved and verified the effectiveness of the proposed F-DPC control strategy.
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基于模糊控制器的并联有源滤波直接功率控制的仿真与实时实现
本文提出了一种新的模糊直接功率控制(F-DPC)策略的仿真和实时实现,以改善并联有源电力滤波器系统的电能质量。该研究的主要目的是降低总谐波电流畸变(THDi)和瞬时功率纹波。这是通过用模糊逻辑规则代替迟滞调节器来实现的。这些规则的基本思想是建立在对有功和无功功率变化的认识基础上的。根据输入的模糊变量,在某一精确时刻选择变换器的最佳开关状态。与传统DPC相比,该控制策略的优点在于不需要引入滞回控制器,实现了对有功和无功功率的强控制。利用Matlab/Simulink对所提出的F-DPC控制进行了仿真,并在dSPACE 1104单卡控制的小型系统上进行了实验验证。仿真结果与实验结果吻合较好,验证了所提F-DPC控制策略的有效性。
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