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Harmonic Resonance Analysis for DFIG-based Offshore Wind Farm with VSC-HVDC Connection

机译:VSC-HVDC连接DFIG近海风电场谐振共振分析

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Harmonic resonances can happen in DFIG-based Offshore Wind Farm (OWF) via VSC-HVDC integration, thus induce large current or voltage distortion and may risk system stability. In this paper, analytical impedance models of VSCHVDC converter and DFIG-based wind turbine generator are derived. Instead of studying system resonance characteristics through Nyquist method by equalizing a DFIG-based OWF and its VSC-HVDC link as a source-load system, the investigated system is treated as a multiple nodes network, and modal-based Resonance Mode Analysis (RMA) is adopted. Potential dominating resonances of the investigated system are analyzed, and the contribution of grid buses to each resonance mode is clarified, which provide reference for the design of harmonic filtering and resonance damping schemes. Numerical simulations are carried out to demonstrate the impedance modelling and RMA analysis results.
机译:通过VSC-HVDC集成,在基于DFIG的离岸风电场(OWF)中可能发生谐波共振,从而引起大电流或电压失真,并且可能有风险系统稳定性。本文推导了VSCHVDC转换器和基于DFIG风力涡轮发电机的分析阻抗模型。通过将基于DFIG的OWF及其VSC-HVDC链路均衡为源负载系统来代替通过奈奎斯特方法研究系统共振特性,而是将研究系统视为多节点网络,并且基于模式的谐振模式分析(RMA)被视为多个节点网络(RMA)被采用。分析了调查系统的潜在支配共振,并阐明了电网总线对每个共振模式的贡献,为谐波滤波和共振阻尼方案的设计提供了参考。进行数值模拟以证明阻抗建模和RMA分析结果。

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