基于dfig的风力机高增益观测器控制

Y. Baala, S. Bri
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引用次数: 4

摘要

本文研究了变速风力发电机组的发电控制问题。在此背景下,提出了一种控制策略,以保证dfig型风力机的抽能优化。所提出的控制策略结合了使用高增益观测器的MPPT和用于DFIG控制的二阶滑模。该策略对DFIG建模的不确定性进行了控制,使能源生产效率最大化。利用Matlab-simulink仿真软件在一台1.5 Mw风力发电机上对该策略进行了验证。对于阶跃和随机风速廓线,得到了电磁转矩的完美收敛和定子无功功率的完全抵消。所得到的单位cos $\varphi$和失真率提高了在电网上产生的电流质量,优化了转换链的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DFIG-Based Wind Turbine Control Using High-Gain Observer
This article deals with the power generation control in variable speed wind turbines. In this context, a control strategy is proposed to ensure power extraction optimization of a DFIG-based wind turbine. The proposed control strategy combines an MPPT using a high gain observer and second-order sliding mode for the DFIG control. This strategy presents control to the uncertainties of DFIG modeling, which maximizes efficiency of energy production. This strategy is been validated on a 1.5 Mw wind turbine using the simulator Matlab-simulink. For step and random wind speed profile, we get perfect convergence of the electromagnetic torque and cancellation of the reactive power to the stator. The unit cos $\varphi$ and the rate of distortion obtained improves the quality of the currents generated on the Grid and optimizes the efficiency of the conversion chain.
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