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Adaptive sliding mode based active disturbance rejection control method for a direct-driven wind power conversion system

机译:基于自适应滑动模式的直接风电转换系统的主动扰动抑制控制方法

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摘要

Considering the internal and external disturbances of the direct-driven wind energy conversion systems, i.e. multi-variable coupling, non-linear characteristic and modelling error, and the environmental disturbances, an adaptive sliding mode observer with active disturbance rejection control (ADRC) method for a direct-driven permanent magnet synchronous generator (PMSG) based wind power conversion system is proposed to track the maximum power point precisely. First, adaptive sliding mode observer based on phase-locked loop can effectively observe the rotor position information of PMSG, and weak the inherent chattering of traditional sliding mode. Second, ADRC can enhance the anti-disturbance ability when the system is under linear state feedback. Finally, the simulation results show that this method can estimate the rotor position exactly, and the system has the strong robustness and the optimum power tracking performance.
机译:考虑到直接驱动的风能转换系统的内部和外部干扰,即多变量耦合,非线性特性和建模误差以及环境干扰,具有主动扰动抑制控制(ADRC)方法的自适应滑模观测器基于直接驱动的永磁同步发电机(PMSG)的风力转换系统被提出精确跟踪最大功率点。首先,基于锁相环的自适应滑动模式观察器可以有效地观察PMSG的转子位置信息,并且弱传统滑动模式的固有抖动。其次,当系统处于线性状态反馈下时,ADRC可以提高反干扰能力。最后,仿真结果表明,该方法可以精确地估计转子位置,并且该系统具有强的鲁棒性和最佳功率跟踪性能。

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