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An Improved PLL Control Strategy for Frequency Support of DFIG-based Wind Turbines

机译:基于DFIG的风力涡轮机的频率支持改进的PLL控制策略

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With the rapid penetration of wind power energy, traditional power system has undergone enormous changes, characterizing with massive phase-locked loop (PLL) based power electronic devices integrated into power grids. As a result, the inertia of the modern power system is greatly weakened and even threatens the stability of the power system in severe frequency events. In order to ensure the frequency stability, this paper proposes an improved PLL-based control method for the doubly fed induction generations (DFIGs) to achieve the frequency response. Firstly, the essence of the frequency support is discussed from the perspective of internal voltage, and then main frequency support methods are classified. Based on the analysis results, an improved frequency support method by adjusting the PLL angular is put forward, which presents a faster response and is able to achieve inertial emulation and primary frequency regulation simultaneously. Meanwhile, the effect of inertia coefficient and damping coefficient on PLL is analyzed. Finally, simulation results verify the effeteness of the proposed method.
机译:随着风能能源的快速渗透,传统的电力系统经历了巨大的变化,用基于大量的锁相环(PLL)集成到电力网格中的电力电子设备进行了巨大的变化。结果,现代电力系统的惯性极大地削弱,甚至威胁到严重频率事件中电力系统的稳定性。为了确保频率稳定性,本文提出了一种改进的基于PLL的控制方法,用于双馈诱导世代(DFIG)来实现频率响应。首先,从内部电压的角度来讨论频率支持的本质,然后分类主频率支持方法。基于分析结果,提出了通过调整PLL角度的改进的频率支持方法,这提出了更快的响应并且能够同时实现惯性仿真和初级频率调节。同时,分析了惯性系数和阻尼系数对PLL的影响。最后,仿真结果验证了所提出的方法的效果。

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