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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >An improved virtual inductance control method considering PLL dynamic based on impedance modeling of DFIG under weak grid
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An improved virtual inductance control method considering PLL dynamic based on impedance modeling of DFIG under weak grid

机译:弱电网下基于双馈双馈阻抗模型的考虑PLL动态特性的改进虚拟电感控制方法

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摘要

Impedance-based method is an effective method to analyze the system stability. Based on the impedance stability theory, an improved virtual inductance control method considering PLL dynamic is presented for the stability of doubly-fed induction generator (DFIG) under weak grid condition. Firstly, equivalent input admittance model of the DFIG system including all its controller is developed in the synchronous reference (d-q) frame. Secondly, the generalized Nyquist criterion (GNC) proves that the stability of the DFIG system can be improved by increasing the rotor inductance. Then, a virtual inductance term is introduced into the RSC current controller to emulate additional inductance in the rotor. However, the virtual inductance method may be ineffectual due to the influence of the PLL dynamic under weak grid condition. Therefore, an improved virtual inductance control method considering the PLL dynamic is implemented to improve the stability of the DFIG system under weak grid condition, and the simulation is used to verify the effectiveness of the improved virtual inductance control strategy.
机译:基于阻抗的方法是一种分析系统稳定性的有效方法。基于阻抗稳定性理论,针对弱电网条件下双馈感应发电机(DFIG)的稳定性,提出了一种考虑PLL动态特性的改进的虚拟电感控制方法。首先,在同步参考(d-q)框架中开发了DFIG系统的等效输入导纳模型,包括其所有控制器。其次,广义奈奎斯特准则(GNC)证明,通过增加转子电感可以提高DFIG系统的稳定性。然后,将虚拟电感项引入RSC电流控制器中,以模拟转子中的附加电感。但是,由于在弱电网条件下PLL动态的影响,虚拟电感方法可能无效。因此,在弱电网条件下,采用一种考虑了PLL动态特性的改进的虚拟电感控制方法,以提高DFIG系统的稳定性,并通过仿真验证了改进的虚拟电感控制策略的有效性。

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