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Complex transfer function-based sequence domain impedance model of doubly fed induction generator

机译:基于复传递函数的双馈感应发电机序列域阻抗模型

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摘要

The impedance-based analysis is widely used to study stability problem between wind turbine system and grid network. Stationary sequence domain impedance has advantages over synchronous dq domain impedance due to its easy measurement in practical application. However, there is frequency coupling effect in sequence domain impedance, and a 2x2 impedance matrix is needed which makes the system be multiple-input-multiple-output system, which makes stability study and controller tuning much more complex compared with single-input-single-output (SISO) system. In this study, impedance model of doubly fed induction generator (DFIG) in sequence domain considering frequency coupling effect is derived based on the complex vector modelling method, which can obtain the straightforward block diagram representation of DFIG impedance. On the basis of the proposed model, the interaction of DFIG and different kinds of grid impedances are studied. Gershgorin theorem is applied to study the fidelity of SISO impedance model in stability analysis. Finally, the proposed impedance-based analysis is verified through simulation.
机译:基于阻抗的分析被广泛用于研究风力涡轮机系统与电网之间的稳定性问题。固定序列域阻抗比同步dq域阻抗具有优势,因为它在实际应用中易于测量。但是,在序列域阻抗中存在频率耦合效应,因此需要一个2x2阻抗矩阵,这使得该系统成为多输入多输出系统,这使得稳定性研究和控制器调整比单输入单阻抗更为复杂。输出(SISO)系统。在此研究中,基于复矢量建模方法,推导了考虑频率耦合效应的双馈感应发电机(DFIG)在频域中的阻抗模型,该模型可直接获得DFIG阻抗的框图表示。在提出的模型的基础上,研究了双馈双馈电网与不同类型电网阻抗的相互作用。 Gershgorin定理用于稳定性分析中SISO阻抗模型的保真度研究。最后,通过仿真验证了所提出的基于阻抗的分析。

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