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Frequency-domain modelling and stability analysis of a DFIG-based wind energy conversion system under non-compensated AC grids: impedance modelling effects and consequences on stability

机译:基于DFIG的风能转换系统在无补偿交流电网下的频域建模和稳定性分析:阻抗建模效果及其对稳定性的影响

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摘要

Impedance-based frequency-domain method is an effective tool for the stability assessment of a doubly fed induction generator (DFIG) system. Several impedance models have been proposed recently; however, these models are usually associated with model reductions since the complexity in achieving a detailed DFIG model. This may lead to unreliable stability results under certain conditions, and a clarification of this modelling effect is lacking in the literature. Therefore, this study aims to address this issue by developing a detailed DFIG impedance model. To achieve this target, a modular modelling technique is proposed instead of the conventional linearisation by parts, for which the components of a DFIG system are modelled as multi-port modules. Through this method, the detailed DFIG model together with four types of reduced-order models can be derived efficiently. The detailed DFIG model is verified by the measured frequency responses in PSCAD/EMTDC, along with its correctness in Nyquist-based stability analysis. Subsequently, four types of the reduced-order models are compared with the detailed one in terms of Nyquist plots, so that their performance and effectiveness for stability analysis are clarified. Besides, conclusions regarding the reduced-order models are also verified by time-domain simulations.
机译:基于阻抗的频域方法是用于双馈感应发电机(DFIG)系统稳定性评估的有效工具。最近提出了几种阻抗模型。但是,这些模型通常与模型简化相关联,因为实现详细的DFIG模型非常复杂。在某些条件下,这可能会导致不可靠的稳定性结果,并且文献中也缺乏对这种建模效果的澄清。因此,本研究旨在通过开发详细的DFIG阻抗模型来解决此问题。为了实现此目标,提出了一种模块化建模技术,而不是常规的零件线性化技术,为此,DFIG系统的组件被建模为多端口模块。通过这种方法,可以有效地导出详细的DFIG模型以及四种类型的降阶模型。通过在PSCAD / EMTDC中测得的频率响应以及其在基于Nyquist的稳定性分析中的正确性,验证了详细的DFIG模型。随后,根据奈奎斯特图将四种类型的降阶模型与详细模型进行了比较,从而阐明了它们的性能和稳定性分析的有效性。此外,关于降阶模型的结论也通过时域仿真得到了验证。

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