基于dfig的风电场与复杂系统连接的次同步振荡研究综述

Xuyang Jin, Qian Zhang, Fan Zhang, Hao Yuan, Baorong Zhou
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引用次数: 0

摘要

风电和电力电子的大规模接入引发的次同步振荡给电力系统的安全稳定运行带来了新的挑战。双馈感应发电机(DFIG)串联补偿接入弱电网或接入多馈直流系统时,风电机组存在SSO风险。因此,迫切需要揭示其内部机制并提出缓解策略。本文首先介绍了基于dfg的风电场等效建模方法,包括可控源聚集等效法、等效参数等效法、考虑集热器系统的单阻抗等效法和多机等效法。然后,讨论了基于dfg的风电场与复杂系统连接时单点登录的主要研究方法,包括特征值分析法、阻抗分析法、频率扫描法、复转矩系数法和时域仿真法。在此基础上,总结了单点登录的缓解措施,分为电力侧缓解方法和电网侧缓解方法。最后,展望了基于dfig的风电场在连接复杂系统中的SSO未来研究方向,为大型dfig风电场的远距离安全稳定输电提供有益的参考。
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Research Overview of Sub-synchronous Oscillation in DFIG-Based Wind Farm Connected to Complex System
The sub-synchronous oscillation(SSO) triggered by the large-scale access of wind power and power electronics have brought new challenges to the safe and stable operation of power system. When the doubly-fed induction generator(DFIG) is connected to weak grid by series compensation or connected to the multi-infeed DC system, there is a risk of SSO of wind turbines. Therefore, it is urgent to reveal the internal mechanism and propose mitigation strategies. Firstly, this paper introduces the equivalence modeling methods of the DFIG-based wind farm, including controlled source aggregation equivalence method, equivalent parameter equivalence method, single impedance equivalence method considering the collector system, and multi-machine equivalence method. Then, the main research methods of SSO in DFIG-based wind farm connected to complex system are discussed, including eigenvalue analysis method, impedance analysis method, frequency scan method, complex torque coefficient method, and time-domain simulation method. On this basis, the mitigation measures of SSO are summarized, which are divided into power-side mitigation method and grid-side mitigation method. Finally, the future research direction of SSO in DFIG-based wind farm connected to complex system is prospected to provide useful references for the long-distance safe and stable transmission of large-scale DFIG-based wind farms.
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