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Improvement of dynamic performance of doubly fed induction generator-based wind turbine power system under an unbalanced grid voltage condition

机译:电网电压不平衡条件下基于双馈感应发电机的风力发电系统动态性能的改善

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摘要

With the current increase in wind power penetration into the energy market, control and operation of wind turbine generators becomes a major research topic. Wind turbine based on doubly fed induction generator (DFIG), which is sensitive to grid disturbances, is widely used. Under an unbalanced grid voltage condition, oscillations of the DFIG's electromagnetic torque and instantaneous stator powers strongly affect the dynamic performance of the DFIG. In this study, a new configuration based on vector proportional–integral (VPI) controller is proposed to eliminate such oscillations. This new configuration is employed in the rotor side converter (RSC) of the DFIG. With the proposed VPI control strategy, decomposition of sequential components and mathematical complexity are reduced. Compared with the conventional fieldoriented control based on the standard single PI controller, the VPI controller can successfully eliminate torque and stator power oscillations. The effectiveness of the proposed control strategy is validated through simulation results obtained on a 1.5 MW DFIG-based wind turbine system model built in MATLAB/Simulink.
机译:随着当前风能渗透到能源市场中的增加,风力涡轮发电机的控制和运行成为主要的研究课题。基于双馈感应发电机(DFIG)的风力发电机对电网扰动敏感,已被广泛使用。在电网电压不平衡的情况下,DFIG的电磁转矩和瞬时定子功率的振荡会强烈影响DFIG的动态性能。在这项研究中,提出了一种基于矢量比例积分(VPI)控制器的新配置来消除这种振荡。 DFIG的转子侧变频器(RSC)采用了这种新配置。利用提出的VPI控制策略,可以减少顺序组件的分解和数学复杂度。与基于标准单个PI控制器的常规磁场定向控制相比,VPI控制器可以成功消除转矩和定子功率振荡。通过在MATLAB / Simulink中构建的基于1.5 MW DFIG的风力涡轮机系统模型上获得的仿真结果,验证了所提出控制策略的有效性。

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