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Decoupled Direct Control of Natural and Power Variables of Doubly Fed Induction Generator for Extended Wind Speed Range Using Feedback Linearization

机译:利用反馈线性化对双馈感应发电机自然和功率变量进行解耦直接控制以扩展风速范围

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The electromagnetic torque, stator power, and the grid side converter power outputs of a doubly fed induction generator (DFIG) are differentiated to obtain a feedback linear relationship with the rotor voltage vectors serving as the control inputs. The derived model is such that can allow for a transition of DFIG to operate at low wind speed by shorting its stator terminal to one another. The torque and power quantities are the state variables of the system, which are insensitive to coordinate system orientation. Steady-state models are used to obtain optimal operating regimes with respect to minimal electrical losses. Decoupled torque control is developed by field orientation, while decoupled power control is derived from voltage orientation of the DFIG. Transients originating from transitioning into low wind speed operation are investigated. Robustness of each of the decoupled controllers against parameter variations is investigated by locating the poles of its closed-loop transfer function. The results for a 5-Hp machine are presented.
机译:对双馈感应发电机(DFIG)的电磁转矩,定子功率和电网侧变流器功率输出进行微分,以获得与用作控制输入的转子电压矢量的反馈线性关系。导出的模型可以通过使DFIG的定子端子彼此短路来允许DFIG过渡以低风速运行。扭矩和功率量是系统的状态变量,对坐标系统的方向不敏感。稳态模型用于获得关于最小电损耗的最佳工作状态。解耦的转矩控制是通过磁场定向实现的,而解耦的功率控制则是从DFIG的电压定向获得的。研究了过渡到低风速运行时产生的瞬变。通过定位其闭环传递函数的极点,研究了每个解耦控制器针对参数变化的鲁棒性。给出了5-Hp机器的结果。

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