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Low voltage ride through capability enhancement of PMSG-based wind turbine

机译:通过PMSG的风力涡轮机的能力增强,低电压乘刷

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This paper investigates the control and operation of permanent magnet synchronous generator (PMSG)-based wind generation systems employing the full-scale frequency converter under network fault conditions. The factors inducing the oscillations of DC-link voltage of the full-scale frequency converter during grid voltage dips are analyzed. A novel control strategy is proposed to suppresses the DC-link voltage oscillations and enhance the low voltage ride-through (LVRT) capability of PMSG-based wind turbine. The generator-side converter is controlled to maintain a stable DC-link voltage, while the grid-side converter is controlled to provide a dynamic coordinated control for the active and reactive power output according to the grid voltage amplitude variations during grid faults. The simulation results implemented in Matlab/Simulink show that the proposed control strategy not only improves the stability of PMSG by means of suppressing the DC-link voltage oscillation, but also provides a dynamic reactive power support to restraint the disturbance of the grid voltage.
机译:本文调查了在网络故障条件下采用全尺寸变频器的永磁同步发电机(PMSG)的导电系统的控制和运行。分析了在电网电压下降期间引起全尺寸变频器DC-LINK电压振荡的因素。提出了一种新的控制策略来抑制直流链路电压振荡,增强基于PMSG的风力涡轮机的低电压乘(LVRT)能力。控制发电机侧转换器以维持稳定的DC链路电压,而控制器侧转换器被控制以提供根据网格故障期间的电网电压幅度变化的主动和无功功率输出的动态协调控制。在MATLAB / SIMULINK中实现的仿真结果表明,所提出的控制策略不仅通过抑制直流链路电压振荡而改善了PMSG的稳定性,而且还提供了一种动态无功功率支持,以限制电网电压的干扰。

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