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Wind farm resonance characteristics analysis based on harmonic impedance measurement method

机译:基于谐波阻抗测量方法的风电场共振特性分析

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Abstract Recently, subsynchronous oscillation (SSO) has been captured in direct-drive permanent magnetic synchronous generator (PMSG) based wind farms in many areas without series compensation in nearby power grids. However, there are fewer reports related to this new type of SSO. In addition, an analysis of the new SSO based on existing methods is computationally cumbersome, and the control effect of the converter was generally simplified in previous studies, which lead to serious errors. This paper proposes a method for analyzing the resonance characteristics of wind farms based on impedance measurement to simplify calculations and improve accuracy. The correctness and effectiveness of the proposed method are validated through the IEEE first benchmark model. A time-domain simulation model of a direct-drive PMSG is established and analyzed by harmonic impedance measurement. The results show that SSO exists when direct-drive PMSGs are connected to a weak AC system. The converter of the direct-drive PMSG exhibits a small negative value at the oscillation mode frequency. This means that the converter behaves like a capacitor with negative impedance. The capacitive impedance of the converter forms a resonant loop with the inductance of the AC grid and causes unstable SSO.
机译:摘要近来,在附近电网中没有序列补偿的许多领域,已经在基于直驱的永磁同步发电机(PMSG)的风电场中捕获了子同步振荡(SSO)。但是,与这种新型SSO有关的报告较少。此外,基于现有方法对新SSO的分析是计算的麻烦,并且转换器的控制效果通常在先前的研究中简化,这导致严重的误差。本文提出了一种基于阻抗测量来分析风电场共振特性的方法,以简化计算,提高精度。通过IEEE第一基准模型验证了所提出的方法的正确性和有效性。通过谐波阻抗测量建立和分析直接驱动PMSG的时域仿真模型。结果表明,当直接驱动PMSG连接到弱AC系统时,SSO存在。直驱PMSG的转换器在振荡模式频率下表现出小的负值。这意味着转换器的表现类似于具有负阻抗的电容器。转换器的电容阻抗形成具有AC网格的电感并导致不稳定的SSO的谐振环。

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