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An Input-to-State Stability Approach to Inertial Frequency Response Analysis of Doubly-Fed Induction Generator-Based Wind Turbines

机译:基于双馈感应发电机的风力发电机惯性频率响应的输入状态稳定方法

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摘要

Due to the proliferation of wind turbines in power networks, participation of doubly-fed induction generator (DFIG)-based wind turbines in the frequency regulation task is attracting more attention during recent decades. It is a challenge to design an effective DFIG's auxiliary frequency controller, since back-to-back converters used in DFIG make the possibility of large deviations in current and speed of rotor during frequency support period. Hence, it is necessary to use exact expression of DFIG's output power in the frequency-related studies. This paper addresses this challenge by developing a nonlinear dynamic model for the DFIG's output power integrated into the dynamic model of power grid. A state feedback controller is proposed by considering whether the DFIGs participate in the frequency regulation task or not. The stability of overall system is studied using a nonlinear control tool, namely, the input-to-state stability (ISS). We provide the sufficient conditions for the controller's parameters to guarantee the power grid with wind speed and load variations to be ISS. The controller is then embedded in the DFIG's detailed model and simulations are performed to evaluate its performance. Negligible recovery period, higher output power, and smoother frequency response are observed by using the proposed controller.
机译:由于风力涡轮机在电力网络中的激增,近几十年来,基于双馈感应发电机(DFIG)的风力涡轮机参与了频率调节任务。设计有效的DFIG辅助频率控制器是一项挑战,因为DFIG中使用的背靠背转换器使在频率支持期间转子电流和速度产生较大偏差的可能性。因此,有必要在与频率相关的研究中使用DFIG输出功率的精确表达。本文通过为集成到电网动态模型中的DFIG输出功率开发非线性动态模型来应对这一挑战。通过考虑DFIG是否参与频率调节任务来提出状态反馈控制器。使用非线性控制工具来研究整个系统的稳定性,即输入状态稳定性(ISS)。我们为控制器的参数提供了充分的条件,以确保具有风速和负载变化的电网成为ISS。然后将控制器嵌入到DFIG的详细模型中,并进行仿真以评估其性能。通过使用建议的控制器,可以观察到可忽略的恢复周期,更高的输出功率和更平滑的频率响应。

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