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System Modeling and Simulation of a Wind Power Generation with Doubly Fed Induction Generator

机译:双馈诱导发电机的风力发电系统建模与仿真

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Variable speed constant frequency (VSCF) doubly fed wind power generation system, which is mainly composed of doubly fed induction generator (DFIG), excitation control system and wind turbine, is a complicated system of electromechanical energy transformation and control. It is quite necessary to study system modeling and simulation of the VSCF doubly fed wind power generation system. Unified control model of VSCF doubly fed wind power generation system is established in this paper based on stator flux orientation vector control, which not only directly reflects structure parameters of DFIG and wind turbine, excitation parameters, and the relationship between variable pitch control and output power, but also indicates in theory that the running characteristics of DFIG and the technical superiority for being used in VSCF wind power generation system. System control model of output power control strategy of VSCF doubly fed wind power generation system which running at different wind speed is established with computer simulation. Simulation results indicate that the established unified control model is brief, instinctive and feasible, which conduces to the theoretical study on application systems of DFIG and to the design on excitation control system.
机译:变速恒定频率(VSCF)双馈风发发电系统,主要由双馈感应发电机(DFIG),励磁控制系统和风力涡轮机组成,是一种复杂的机电能量变换和控制系统。非常有必要研究VSCF双馈风发发电系统的系统建模和仿真。基于定子通量定向矢量控制,本文建立了VSCF双馈风发发电系统的统一控制模型,这不仅直接反映了DFIG和风力涡轮机,激励参数的结构参数,以及可变音高控制和输出功率之间的关系,也表明了DFIG的运行特性以及用于VSCF风力发电系统的技术优势。建立了在不同风速下运行的VSCF双馈风发电系统输出功率控制策略的系统控制模型,通过计算机仿真建立了不同风速。仿真结果表明,既定的统一控制模型是简短的,本能和可行的,这涉及DFIG应用系统和激励控制系统设计的理论研究。

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