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Modeling and stability analysis methods for investigating subsynchronous control interaction in large-scale wind power systems

机译:用于调查大型风电系统中子同步控制相互作用的建模与稳定性分析方法

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The subsynchronous control interaction (SSCI) occurs when the wind turbine converter (WTC) controls interact with the series-compensated or weak AC network. The mechanism and attributes of the emerging interaction phenomenon invilving wind turbine generators (WTGs) are quite different from the traditional subsynchronous resonance or oscillation (SSR/SSO) phenomenon in steam turbine-generators (STGs). The SSCI is characterized by various system-wide parameters, including the wind speed and its uneven distribution in a wind power plant, varying number of WTGs connected to the grid, type of the WTGs, parameters of the WTC controls, level of series compensation, stiffness of the grid, etc. Such system-wide parameters change over time and thus make the modeling and analysis rather challenging to conduct SSCI studies. An ideal modeling approach for the SSCI is expected to preserve the system topology as well as valid for a wide range of operating conditions and parameters of the system. On the other hand, an ideal stability analysis method is supposed to give key quantitative in-formation, such as the magnitude, frequency, and origin of the oscillation, as well as the component level participation indices. This paper provides a comparative insight into the application of existing and emerging modeling and stability analysis approaches for SSCI investigations in large-scale wind farms. It highlights the strengths and weaknesses of various modeling methods and analysis criteria. Finally, the paper underlines the recent advancements and points out towards the research directions in small/large-signal impedance modeling and stability approaches for accurate and quantitative investigation of the SSCI.
机译:当风力涡轮机转换器(WTC)控制与串联补偿或弱AC网络相互作用时,发生了子同步控制交互(SSCI)。新兴交互现象邀请风力涡轮发电机(WTG)的机制和属性与蒸汽轮机发生器(STG)中的传统的子同步谐振或振荡(SSR / SSO)现象完全不同。 SSCI的特点是各种系统范围的参数,包括风力发电厂中的风速及其不均匀分布,改变连接到网格的WTG数,WTG的类型,WTC控制的参数,序列补偿等级,电网等刚度等。这种系统范围的参数随着时间的推移而变化,从而使建模和分析相当具有挑战性,以进行SSCI研究。预计SSCI的理想建模方法将保留系统拓扑,以及适用于系统的各种操作条件和参数。另一方面,理想的稳定性分析方法应该提供关键的定量形式,例如振荡的幅度,频率和原点,以及组件级参与指数。本文提供了对大型风电场SSCI调查的现有和新兴建模和稳定性分析方法的应用比较洞察。它突出了各种建模方法和分析标准的优势和缺点。最后,该论文强调了最近的进步,并指出了小/大信号阻抗建模和稳定性方法的研究方向,以准确和定量调查SSCI。

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