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A Decoupling Control Method for Shunt Hybrid Active Power Filter Based on Generalized Inverse System

机译:基于广义逆系统的分离式混合动电力滤波器解耦控制方法

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摘要

In this paper, a novel decoupling control method based on generalized inverse system is presented to solve the problem of SHAPF (Shunt Hybrid Active Power Filter) possessing the characteristics of 2-input-2-output nonlinearity and strong coupling. Based on the analysis of operation principle, the mathematical model of SHAPF is firstly built, which is verified to be invertible using interactor algorithm; then the generalized inverse system of SHAPF is obtained to connect in series with the original system so that the composite system is decoupled under the generalized inverse system theory. The PI additional controller is finally designed to control the decoupled 1-order pseudolinear system to make it possible to adjust the performance of the subsystem. The simulation results demonstrated by MATLAB show that the presented generalized inverse system strategy can realise the dynamic decoupling of SHAPF. And the control system has fine dynamic and static performance.
机译:本文提出了一种基于广义逆系统的新型解耦控制方法,解决了具有2输入-2-输出非线性特性和强耦合特性的Shapf(分流混合有源电力滤波器)的问题。基于运行原理的分析,首先建立了SHAPF的数学模型,验证了使用互动器算法可逆性;然后,获得了SHAPF的广义逆系统以与原始系统串联连接,使得复合系统在广义逆系统理论下解耦。 PI附加控制器最终旨在控制解耦的1阶伪型系统,以便可以调整子系统的性能。 Matlab证明的仿真结果表明,所呈现的广义逆系统策略可以实现SHAPF的动态去耦。控制系统具有精细的动态和静态性能。

著录项

  • 作者

    Xin Li; Bo Li;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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