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DC voltage control strategy based on active disturbance rejection control for active power filter

机译:基于有源干扰抑制控制的有源电力滤波器直流电压控制策略

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As one of the most effective means to eliminate the harmonic interference on the grid side, the study and application about active filter has drawn more and more attention. It is necessary to ensure the active power filter DC capacitor voltage stability for the Active Power Filter efficiently and accurately operation while compensating the harmonics of the power grid. In this paper, a voltage control strategy based on Active Disturbance Rejection Control for the stabilization of the DC side capacitor voltage is proposed, and the design methods of the tracking differentiator, nonlinear feedback unit and extended state observer are given. This DC voltage control strategy improves the response speed, reduces the overshoot and improves the control precision of the DC capacitor voltage. MATLAB/Simulink is used for modeling, simulating and analyzing of the proposed control strategy. The simulation results prove the feasibility and stability of the strategy.
机译:作为消除电网侧谐波干扰的最有效手段之一,有源滤波器的研究与应用引起了越来越多的关注。有必要在补偿电网谐波的同时,确保有源电力滤波器的有源电力滤波器直流电容器的电压稳定高效,准确地运行。提出了一种基于有源干扰抑制控制的直流侧电容器电压稳定控制策略,并给出了跟踪微分器,非线性反馈单元和扩展状态观测器的设计方法。这种直流电压控制策略提高了响应速度,减少了过冲,并提高了直流电容器电压的控制精度。 MATLAB / Simulink用于对所提出的控制策略进行建模,仿真和分析。仿真结果证明了该策略的可行性和稳定性。

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