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Modeling and improvement of direct power control of DFIG under unbalanced grid voltage condition

机译:电网电压不平衡条件下双馈双馈电源直接功率控制的建模与改进

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This paper presents analysis and control of a doubly-fed induction generator (DFIG)-based wind generation system operating under unbalanced grid voltage condition. The DFIG system is modeled in synchronous positive reference frame. System behavior and operation of both the generator and the grid side converter (GSC) under unbalanced condition is illustrated by definition of oscillating power terms in the synchronous reference frame. This analysis makes it possible to control both the active and reactive power generation by means of direct power control (DPC) technique. It is shown that considering the DFIG model in synchronous reference frame simplifies the power terms extraction. Moreover, alternative DFIG control targets such as reducing unbalanced stator current, torque and power pulsations minimization, are considered. In addition, by the proposed method, the oscillation of the stator output power is compensated by the GSC, to ensure constant power output from the overall DFIG generation system. The validation of results has been performed through simulation results on a 2 MW DFIG wind generation system.
机译:本文介绍了基于双馈感应发电机(DFIG)的风力发电系统在不平衡电网电压条件下运行的分析和控制。 DFIG系统在同步正参考框架中建模。通过定义同步参考系中的振荡功率项,可以说明发电机和电网侧变流器(GSC)在不平衡条件下的系统行为和运行情况。通过这种分析,可以通过直接功率控制(DPC)技术控制有功和无功发电。结果表明,在同步参考帧中考虑DFIG模型可简化功率项提取。此外,还考虑了可选的DFIG控制目标,例如减少不平衡定子电流,最小化扭矩和功率脉动。此外,通过提出的方法,定子输出功率的振荡由GSC补偿,以确保从整个DFIG生成系统输出恒定的功率。结果的验证是通过在2 MW DFIG风力发电系统上的模拟结果进行的。

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