mathrm Robust Current Control for DFIG-Based Wind Turbine Subject to Grid Voltage Distortions
This paper proposes an H ∞ robust current controller for doubly-fed induction-generator (DFIG)-based wind turbines subject to grid voltage distortions. The controller is to mitigate the impact of the grid voltage distortions on rotor currents with DFIG parameter perturbation. The grid voltage distor...
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Published in | IEEE transactions on sustainable energy Vol. 8; no. 2; pp. 816 - 825 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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01.04.2017
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Abstract | This paper proposes an H ∞ robust current controller for doubly-fed induction-generator (DFIG)-based wind turbines subject to grid voltage distortions. The controller is to mitigate the impact of the grid voltage distortions on rotor currents with DFIG parameter perturbation. The grid voltage distortions considered include asymmetric voltage dips and grid background harmonics. An uncertain DFIG model is developed with uncertain factors originating from distorted stator voltage, and changed generator parameters due to the flux saturation effect, the skin effect, etc. Weighting functions are designed to efficiently track the unbalanced current components and the fifth and seventh background harmonics. The robust stability and robust performance of the proposed controller are verified by the structured singular value μ. The performance of the H ∞ robust current controller was demonstrated with a 1.5-MW DFIG model, showing its harmonics suppression ability with DFIG parameter perturbation and improved robustness. |
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AbstractList | This paper proposes an H ∞ robust current controller for doubly-fed induction-generator (DFIG)-based wind turbines subject to grid voltage distortions. The controller is to mitigate the impact of the grid voltage distortions on rotor currents with DFIG parameter perturbation. The grid voltage distortions considered include asymmetric voltage dips and grid background harmonics. An uncertain DFIG model is developed with uncertain factors originating from distorted stator voltage, and changed generator parameters due to the flux saturation effect, the skin effect, etc. Weighting functions are designed to efficiently track the unbalanced current components and the fifth and seventh background harmonics. The robust stability and robust performance of the proposed controller are verified by the structured singular value μ. The performance of the H ∞ robust current controller was demonstrated with a 1.5-MW DFIG model, showing its harmonics suppression ability with DFIG parameter perturbation and improved robustness. |
Author | Gong, Wenming Wang, Yun Gryning, Mikkel Peter Sidoroff Wu, Qiuwei |
Author_xml | – sequence: 1 givenname: Yun surname: Wang fullname: Wang, Yun email: wangyun@szu.edu.cn organization: College of Mechatronics and Control Engineering, Shenzhen University, Shenzhen, China – sequence: 2 givenname: Qiuwei surname: Wu fullname: Wu, Qiuwei email: qw@elektro.dtu.dk organization: Centre for Electric Power and Energy, Department of Electrical Engineering, Technical University of Denmark, Kgs. Lyngby, Denmark – sequence: 3 givenname: Wenming surname: Gong fullname: Gong, Wenming email: gongwm@csg.cn organization: Electric Power Research Institute, China Southern Power Grid, Guangzhou, China – sequence: 4 givenname: Mikkel Peter Sidoroff surname: Gryning fullname: Gryning, Mikkel Peter Sidoroff email: migry@dongenergy.dk organization: DONG Energy, Gentofte, Denmark |
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Snippet | This paper proposes an H ∞ robust current controller for doubly-fed induction-generator (DFIG)-based wind turbines subject to grid voltage distortions. The... |
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SubjectTerms | Doubly fed induction generator (DFIG) grid harmonics grid voltage distortion Harmonic analysis Harmonic distortion robust control Robustness Rotors Stators Voltage control wind turbine |
Title | mathrm Robust Current Control for DFIG-Based Wind Turbine Subject to Grid Voltage Distortions |
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