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Study of Multi-factor Coordinated Frequency Control Strategy by DFIG Wind Turbine

机译:DFIG风力涡轮机多因素协调频率控制策略研究

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Background: With the large-scale Doubly Fed Induction Generator (DFIG) wind turbine integrated into the power system, the DFIG inertia response of the wind turbine should be provided. Also, the frequency response should be similar to the conventional generation technologies. This paper investigated the influence of frequency response term and wind speed conditions on system frequency control. Methods: The specific operating conditions of four control strategies, including inertia control, droop control, over speed control and pitch angle control were researched in this paper. Multi-factor coordinated frequency control strategy of DFIG wind turbine was established based on the above researches. The strategy was composed of wind speed ranging from low to high. Results: According to the simulation results, the DFIG wind turbine, which was based on multi-%%%factor coordinated frequency control strategy, could respond to the system's frequency change of power grid, effectively. Conclusion: It helps system frequency return to stable states better and faster than DFIG wind turbine and also could reduce the fluctuation of system frequency.
机译:背景:随着大规模的双馈感应发电机(DFIG)风力涡轮机集成到电力系统中,应提供风力涡轮机的DFIG惯性响应。而且,频率响应应该类似于传统的生成技术。本文研究了频率响应项和风速条件对系统频率控制的影响。方法:本文研究了四种控制策略的具体操作条件,包括惯性控制,下垂控制,过度控制和俯仰角度控制。基于上述研究建立了DFIG风力涡轮机的多因素协调频率控制策略。该策略由低到高的风速组成。结果:根据仿真结果,DFIG风力涡轮机,基于多重%%%因子协调频率控制策略,可以响应系统的电网频率变化,有效。结论:它可以帮助系统频率恢复稳定状态,比DFIG风力涡轮机更快,也可以降低系统频率的波动。

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