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Coordinated Control of a DFIG-Based Wind-Power Generation System with SGSC under Distorted Grid Voltage Conditions

机译:电网电压畸变条件下基于SGSC的基于DFIG的风力发电系统的协调控制

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This paper presents a coordinated control method for a doubly-fed induction generator (DFIG)-based wind-power generation system with a series grid-side converter (SGSC) under distorted grid voltage conditions. The detailed mathematical models of the DFIG system with SGSC are developed in the multiple synchronous rotating reference frames. In order to counteract the adverse effects of the voltage harmonics upon the DFIG, the SGSC generates series compensation control voltages to keep the stator voltage sinusoidal and symmetrical, which allows the use of the conventional vector control strategy for the rotor-side converter (RSC), regardless of grid voltage harmonics. Meanwhile, two control targets for the parallel grid-side converter (PGSC) are identified, including eliminating the oscillations in total active and reactive power entering the grid or suppressing the fifth- and seventh-order harmonic currents injected to the grid. Furthermore, the respective PI-R controller in the positive synchronous reference frame for the SGSC voltage control and PGSC current control have been developed to achieve precise and rapid regulation of the corresponding components. Finally, the proposed coordinated control strategy has been fully validated by the simulation results of a 2 MW DFIG-based wind turbine with SGSC under distorted grid voltage conditions.
机译:本文提出了一种在电网电压失真的情况下,基于双馈感应发电机(DFIG)的带有串联电网侧变流器(SGSC)的风力发电系统的协调控制方法。在多个同步旋转参考系中,开发了带有SGSC的DFIG系统的详细数学模型。为了抵消电压谐波对DFIG的不利影响,SGSC生成串联补偿控制电压以保持定子电压为正弦和对称状态,从而允许将常规矢量控制策略用于转子侧变流器(RSC) ,无论电网电压谐波如何。同时,确定了并联电网侧变流器(PGSC)的两个控制目标,包括消除进入电网的总有功和无功功率的振荡或抑制注入电网的五阶和七阶谐波电流。此外,已经开发了用于SGSC电压控制和PGSC电流控制的正同步参考系中的各个PI-R控制器,以实现对相应组件的精确和快速调节。最终,所提出的协调控制策略已在电网电压失真的情况下,通过基于2 MW DFIG的SGSC风力发电机组的仿真结果得到了充分验证。

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