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Analysis of control interaction between D-PMSGs-based wind farm and SVC

机译:基于D-PMSGS的风电场和SVC的控制相互作用分析

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According to an accident analysis report, with regard to sub-synchronous oscillation (SSO) in Xinjiang, China, dynamic reactive compensation devices have great influence on the existence of sub-synchronous harmonics. This paper based on the practical phenomenon for further study, focuses on the interaction between direct-drive permanent synchronous generators (D-PMSGs)-based wind farm and static var compensator (SVC). Detailed electro-magnetic transient simulation model, such as D-PMSGs-based wind farm compensated by SVC, is established in PSCAD/EMTDC. Time-domain simulation results demonstrate that there is interaction between D-PMSGs-based wind farm and SVC, which is closely related with the control parameters of SVC and D-PMSGs-based wind farm. This type of control interaction will lead to sub-synchronous oscillation. Therefore, the influence of above control parameters on the oscillation characteristics is further studied here. The practical significance of this paper is indicating the necessity of coordinating and optimising control parameters in large-scale wind farm.
机译:根据事故分析报告,关于新疆的亚同步振荡(SSO),动态无功补偿装置对亚同步谐波的存在很大影响。本文根据进一步研究的实际现象,专注于直接驱动永久同步发电机(D-PMSG)与基于风电场和静态VAR补偿器(SVC)之间的相互作用。在PSCAD / EMTDC中建立了详细的电磁瞬态仿真模型,如SVC补偿的基于D-PMSGS的风电场。时域模拟结果表明,基于D-PMSGS的风电场和SVC之间存在相互作用,其与基于SVC和基于D-PMSGS的风电场的控制参数密切相关。这种类型的控制交互将导致子同步振荡。因此,这里进一步研究了上述控制参数对振荡特性的影响。本文的实际意义表明在大型风电场中配对和优化控制参数的必要性。

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