华南理工大学学报(自然科学版) ›› 2009, Vol. 37 ›› Issue (11): 56-63.

• 动力与电气工程 • 上一篇    下一篇

基于模型预测控制的三相四桥臂有源电力滤波器

王晓刚 谢运祥 帅定新 黄少辉   

  1. 华南理工大学 电力学院, 广东 广州 510640
  • 收稿日期:2008-06-17 修回日期:2008-09-18 出版日期:2009-11-25 发布日期:2009-11-25
  • 通信作者: 王晓刚(1976-),男,现为广州大学讲师,博士,主要从事电力电子与电力传动研究. E-mail:ieewxg@163.com
  • 作者简介:王晓刚(1976-),男,现为广州大学讲师,博士,主要从事电力电子与电力传动研究.
  • 基金资助:

    国家自然科学基金资助项目(60534040)

Three-Phase Four-Leg Active Power Filter Based on Model Predictive Control

Wang Xiao-gang  Xie Yun-xiang  Shuai Ding-xin  Huang Shao-hui   

  1. School of Electric Power, South China University of Technology, Guangzhou 510640, Guangdong, China
  • Received:2008-06-17 Revised:2008-09-18 Online:2009-11-25 Published:2009-11-25
  • Contact: 王晓刚(1976-),男,现为广州大学讲师,博士,主要从事电力电子与电力传动研究. E-mail:ieewxg@163.com
  • About author:王晓刚(1976-),男,现为广州大学讲师,博士,主要从事电力电子与电力传动研究.
  • Supported by:

    国家自然科学基金资助项目(60534040)

摘要: 针对现有有源电力滤波器数字化控制方法对模型依赖性较强的缺点,基于正负序系统和零序系统解耦控制提出了一种三相四桥臂有源电力滤波器的模型预测控制(MPC)方法,以差分方程作为预测模型,保留了常规MPC中的反馈校正和滚动优化环节,推导出了最优控制律.将该方法与常用的预测电流控制方法做了对比,得出了“带电源电压观测器的预测电流控制只是模型预测控制的一个特例”的结论;详细分析了参数对稳定性的影响,通过修改MPC的参数,可以在省略带通滤波器的情况下,允许更大的连接电抗参数建模误差,鲁棒性比预测电流控制更高.此外,MPC和重复控制相结合消除了MPC所固有的稳态误差.仿真结果验证了所提方法的有效性和正确性.

关键词: 三相四桥臂电源, 有源电力滤波器, 模型预测控制, 重复控制, 鲁棒性

Abstract:

As the existing digital control methods for active power filters are highly dependent on the adoptea models, this paper proposes a model predictive control (MPC) method for a three-phase four-leg active power filter based on the decoupling control of the positive-negative-order and the zero-order systems. By taking the difference equation as the predictive model, the feedback correction and dynamic optimization in the conventional MPC methods are reserved, and the optimal control law is deduced. The proposed method is then compared with common predictive current control methods, drawing a conclusion that the predictive current control with supply voltage observer is only a special case of MPC. Moreover, the influences of system parameters on the system stability are analyzed, and a larger modeling error allowance of connection reactor and a stronger robustness of the controller are ob- tained by modifying MPC parameters, with the bandpass filter being omitted. The combination of MPC and a repetitive controller eliminates the inherent steady-state error of MPC. Simulated results indicate that the proposed method is effective and valid.

Key words: three-phase four-leg power, active power filter, model predictive control, repetitive control, robustness