首页> 外文会议>2011 International Conference on Control, Automation and Systems Engineering (CASE) >Current Harmonic Compensation by Shunt Active Power Filter Based on Adaptive Linear Neural Networks Using Symmetrical Components
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Current Harmonic Compensation by Shunt Active Power Filter Based on Adaptive Linear Neural Networks Using Symmetrical Components

机译:基于对称分量的自适应线性神经网络并联有源电力滤波器的电流谐波补偿。

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Generation of reference current constitutes an important part in the control of active power filter, so a new neural identification scheme for the current harmonic extraction is proposed, that is, the fundamental positive and negative sequence components of non-linear load current are extracted directly by adaptive linear neural filter to generate reference current under non-ideal conditions. And a phase-locked loop system is used to the track the actual grid frequency so the adaptive linear neural filter adapts with grid frequency fluctuations. The reference currents are then introduced to the control scheme based on fuzzy logic variable hysteresis band current control, so the active power filter can track the reference current in a fast dynamic response. The proposed scheme is studied analytically and tested by simulation using Matlab/Simulink. The validity and effectiveness of the harmonic compensation are confirmed by the simulation results.
机译:参考电流的生成是有源电力滤波器控制的重要组成部分,因此提出了一种新的电流谐波提取神经识别方案,即直接提取非线性负载电流的正负基本成分。自适应线性神经滤波器,可在非理想条件下生成参考电流。并且使用锁相环系统跟踪实际电网频率,因此自适应线性神经滤波器可以适应电网频率波动。然后将参考电流引入到基于模糊逻辑可变磁滞带电流控制的控制方案中,因此有源功率滤波器可以快速动态响应地跟踪参考电流。对该方案进行了分析研究,并通过Matlab / Simulink仿真进行了测试。仿真结果证实了谐波补偿的有效性和有效性。

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