风电应用中基于滑模观测器的dfig无传感器直接功率控制

Chun Wei, W. Qiao, Yue Zhao
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引用次数: 8

摘要

提出了一种新的转子位置估计算法,用于风力发电中双馈感应发电机直接功率控制(DPC)的参考系变换。该算法既可以作为替代转子位置传感器的主转子位置信息提供者,也可以作为转子位置传感器故障时的备用转子位置信息提供者,实现风力发电系统的安全稳定运行。所提出的转子位置估计算法基于非线性滑模观测器(SMO),具有参数不敏感和对系统结构不确定性具有较高鲁棒性的优点。所提出的SMO只需要定子电阻和电感的信息,而不需要比例积分(PI)控制器,从而省去了调整PI参数的需要,从而简化了系统设计。在MATLAB/Simulink中对2 mw dfig系统进行了仿真,验证了所提无传感器DPC方案的有效性。
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Sliding-mode observer-based sensorless direct power control of DFIGs for wind power applications
This paper proposes a novel rotor position estimation algorithm used for reference frame transformation in the direct power control (DPC) of a doubly-fed induction generator (DFIG) in wind power applications. The proposed algorithm can be used as a primary rotor position information provider to replace the rotor position sensor or a backup rotor position information provider during the malfunction of the rotor position sensor to achieve secure and stable operations of the wind power generation system. The proposed rotor position estimation algorithm is based on a nonlinear sliding-mode observer (SMO), which has the advantages such as parameter insensitivity and high robustness to system structure uncertainty. The proposed SMO only requires the information of the stator resistance and inductance while the proportional-integral (PI) controller is not required, thus simplifying the system design by removing the need of tuning PI parameters. The effectiveness of the proposed sensorless DPC scheme is confirmed by the simulation results for a 2-MW-DFIG system in MATLAB/Simulink.
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