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DC Current and Voltage Droop Control Method of Hybrid HVDC Systems for an Offshore Wind Farm Connection to Enhance AC Voltage Stability

机译:用于海上风电场连接的混合HVDC系统的直流电流和电压下垂控制方法,提高交流电压稳定性

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摘要

A new DC current-voltage droop control method for a hybrid high-voltage direct-current (HVDC) system featuring a voltage-sourced converter (VSC) rectifier and a line-commutated converter (LCC) inverter is presented. The proposed method utilizes DC voltage droop control to reduce the AC voltage fluctuation at the inverter side, to exploit the hybrid HVDC system for connecting offshore wind farms to weak grids without necessitating continuous reactive power compensation facilities. Additionally, an optimal droop coefficient calculation method is proposed to keep the AC voltage constant for wind power fluctuations. To evaluate the stability of the proposed method, a small-signal state-space (SS) model of the target system is derived and the root locus analysis is given. Simulation case studies are performed using an electromagnetic transient model in PSCAD and an SS model in MATLAB. The results demonstrate that a hybrid HVDC system with the proposed method successfully integrates offshore wind energy and weak grids without additional facilities because the AC voltage can be maintained at a near constant during wind fluctuations.
机译:呈现了一种新的DC电流 - 电压下垂控制方法,用于混合高压直流(HVDC)系统,具有电压 - 流量转换器(VSC)整流器和线路换向转换器(LCC)逆变器。所提出的方法利用DC电压下垂控制来降低逆变器侧的交流电压波动,用于利用混合HVDC系统,用于将近海风电场连接到弱网格,而不需要连续的无功补偿设施。另外,提出了一种最佳的下垂系数计算方法,以保持风电波动的交流电压常数。为了评估所提出的方法的稳定性,导出目标系统的小信号状态空间(SS)模型并给出根轨迹分析。使用PSCAD中的电磁瞬态模型和MATLAB的SS模型进行模拟案例研究。结果表明,具有所提出的方法的混合HVDC系统成功集成了海上风能和弱网格而无需额外的设施,因为在风波动期间可以在接近恒定处保持AC电压。

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