首页> 外文会议>IEEE Conference on Industrial Electronics and Applications; 20070523-25; Harbin(CN) >A Novel Nonlinear Passivity-Based Control Algorithm for Active Power Filter Using Euler-Lagrange Model
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A Novel Nonlinear Passivity-Based Control Algorithm for Active Power Filter Using Euler-Lagrange Model

机译:基于欧拉-拉格朗日模型的基于非线性无源性的有源电力滤波器控制算法

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The performance and application of Active Power Filter (APF) in power system is closely linked to the control strategy. The paper proposes a novel nonlinear passivity-based algorithm for APF based on Euler-Lagrange (EL) dynamic averaged model of APF. Firstly, the EL dynamic averaged expressions of APF are determined in terms of substitution theorem and EL system theory. Secondly, according to passivity theory and EL averaged model presented, the passivity-based feedback control laws and the whole control objectives of APF are proposed, which can guarantee the stability and achieve asymptotically command tracking. Lastly, in order to overcome the difficulty in estimating the ripple component on dc-side capacitor voltage, the modified control algorithm is proposed by neglecting the ripple component. Simulation results are presented to verify the validity of the proposed algorithm
机译:有源电力滤波器(APF)在电力系统中的性能和应用与控制策略密切相关。基于APF的欧拉-拉格朗日(EL)动态平均模型,提出了一种基于非线性无源性的APF算法。首先,根据置换定理和EL系统理论确定APF的EL动态平均表达式。其次,根据无源理论和EL平均模型,提出了基于无源的反馈控制律和APF的总体控制目标,可以保证系统的稳定性,并能渐近地实现命令跟踪。最后,为克服估计直流侧电容器电压纹波分量的困难,提出了一种忽略纹波分量的改进控制算法。仿真结果验证了所提算法的有效性。

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