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Dynamic Phasor-based Stability Analysis of Multi-Terminal VSC-HVDC Links with Offshore AC Networks

机译:基于动态相位的多终端VSC-HVDC链路与海上交流网络的动态相控稳定性分析

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The paper proposes the stability analysis of an offshore wind power plant connected to an onshore AC grid through high voltage AC (HVAC) and multi-terminal high voltage DC (MTDC) transmission systems. Dynamic phasor (DP) technique is used to derive the small-signal model of the entire system and to analyze the system with sufficient accuracy and relatively lower computation cost. The DP modeling accounts for the voltage source converter (VSC) models, inner current controller, outer voltage controller, and droop controllers. The impact of the variation of the frequency droop gain, voltage droop gain and line inductance values on the system stability is studied by performing an eigenvalue analysis of the combined system. Simulations in MATLAB/Simulink are used to validate the DP-based analysis of VSC-HVDC systems for offshore wind farm applications.
机译:本文提出了通过高压交流(HVAC)和多端高压DC(MTDC)传输系统连接到陆上AC电网的海上风电厂的稳定性分析。动态相量(DP)技术用于导出整个系统的小信号模型,并以足够的精度和相对较低的计算成本分析系统。 DP建模用于电压源转换器(VSC)型号,内部电流控制器,外部电压控制器和下垂控制器。通过执行组合系统的特征值分析,研究了频率下垂增益,电压下降增益和线电感值对系统稳定性的影响。 MATLAB / SIMULINK中的模拟用于验证对海上风电场应用的VSC-HVDC系统的基于DP的分析。

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