张天翼, 王海风. 风电并入弱交流系统引发次同步振荡的研究方法综述[J]. 电力系统保护与控制, 2021, 49(16): 177-187. DOI: 10.19783/j.cnki.pspc.210776
引用本文: 张天翼, 王海风. 风电并入弱交流系统引发次同步振荡的研究方法综述[J]. 电力系统保护与控制, 2021, 49(16): 177-187. DOI: 10.19783/j.cnki.pspc.210776
ZHANG Tianyi, WANG Haifeng. Research methods for subsynchronous oscillation induced by wind power under weak AC system: a review[J]. Power System Protection and Control, 2021, 49(16): 177-187. DOI: 10.19783/j.cnki.pspc.210776
Citation: ZHANG Tianyi, WANG Haifeng. Research methods for subsynchronous oscillation induced by wind power under weak AC system: a review[J]. Power System Protection and Control, 2021, 49(16): 177-187. DOI: 10.19783/j.cnki.pspc.210776

风电并入弱交流系统引发次同步振荡的研究方法综述

Research methods for subsynchronous oscillation induced by wind power under weak AC system: a review

  • 摘要: 随着高比例风电接入电力系统的实践日益增多,并网风电系统在弱连接条件下可能会引发次同步振荡,影响系统的安全稳定运行,因此亟需揭示其内在产生机理。现有研究试图从多个角度、采用多种分析方法阐明弱连接条件下并网风电系统的小干扰稳定性机理。这些方法的运用促进了次同步振荡机理研究的深入,同时也导致研究成果的碎片化,需要进一步梳理。针对以上情况,回顾并梳理了近年来国内外的研究成果,从时域分析、模式分析、阻抗分析及复转矩系数分析4个方面,综述了各自方法体系下的机理研究发展脉络以及弱连接条件下的应用现状。对不同分析方法在机理研究中的优势与局限进行了归纳和对比。最后,基于归纳结果,展望了各自方法在未来风电并入弱连接电网的小干扰稳定机理研究中的研究趋势和应用前景,以期为大规模风电的长距离安全稳定输送提供有益的参考。

     

    Abstract: As the practice of high proportion of wind power access to the power system gradually increases, sub-synchronous oscillation may occur in grid-connected wind power system under weak connection conditions, which affects the safe and stable operation of the system. Therefore, it is urgent to reveal the inherent mechanism. Current researches attempt to clarify the small disturbance stability mechanism of grid-connected wind power system under weak connection condition by using various analysis methods from multiple perspectives. The application of these methods promotes the in-depth study of the mechanism of sub-synchronous oscillation, but also leads to the fragmentation of research results, which needs to be further summarized. Given to the above situation, the research results both from China and foreign countries in recent years are reviewed and sorted out. From four aspects of time domain analysis, mode analysis, impedance analysis and complex torque coefficient analysis, the development of mechanism research under each analysis methodology and the application status of weak connection condition are summarized. The advantages and limitations of different analysis methods in mechanism research are summarized and compared. Finally, based on the results, the research trends and application prospects of each method in the future research on the stability mechanism of wind power integrated into the weakly connected power grid with small disturbances are prospected, in order to provide a beneficial reference for the safe and stable long-distance transmission of large-scale wind power.

     

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