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STATCOM Impact Study on the Integration of a Large Wind Farm into a Weak Loop Power System

机译:STATCOM对大型风电场并入弱回路电力系统的影响研究

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Recently, renewable wind energy is enjoying a rapid growth globally to become an important green electricity source to replace polluting and exhausting fossil fuel. However, with wind being an uncontrollable resource and the nature of distributed wind induction generators, integrating a large-scale wind-farm into a power system poses challenges, particularly in a weak power system. In the paper, the impact of static synchronous compensator (STATCOM) to facilitate the integration of a large wind farm (WF) into a weak power system is studied. First, an actual weak power system with two nearby large WFs is introduced. Based on the field SCADA data analysis, the power quality issues are highlighted and a centralized STATCOM is proposed to solve them, particularly the short-term (seconds to minutes) voltage fluctuations. Second, a model of the system, WF, and STATCOM for steady state and dynamic impact study is presented, and the model is validated by comparing with the actual field data. Using simulated PV and QV curves, voltage control and stability issues are analyzed, and the size and location of STATCOM are assessed. Finally, a STATCOM control strategy for voltage fluctuation suppression is presented and dynamic simulations verify the performance of proposed STATCOM and its control strategy.
机译:最近,可再生风能在全球范围内正迅速发展,已成为替代污染和排放化石燃料的重要绿色电力来源。然而,由于风是不可控制的资源,并且分布式风力感应发电机具有其本质,因此将大型风电场集成到电力系统中会带来挑战,尤其是在电力系统较弱的情况下。在本文中,研究了静态同步补偿器(STATCOM)对将大型风电场(WF)集成到弱电系统中的影响。首先,介绍了具有两个附近大型WF的实际弱电系统。基于现场SCADA数据分析,突出显示了电能质量问题,并提出了集中式STATCOM来解决这些问题,尤其是短期(几秒钟至几分钟)的电压波动。其次,给出了用于稳态和动态冲击研究的系统模型WF和STATCOM,并与实际现场数据进行了比较验证。使用模拟的PV和QV曲线,分析电压控制和稳定性问题,并评估STATCOM的大小和位置。最后,提出了抑制电压波动的STATCOM控制策略,并通过动态仿真验证了所提出的STATCOM的性能及其控制策略。

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