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Variable Parameters Primary Frequency Control Strategy of DFIG

机译:DFIG的可变参数一次频率控制策略

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The rotor speed of DFIG(doubly fed induction generator) and system frequency are decoupled, this leads to poor responding performance of DFIG to the change of power system frequency. The rotary inertia and primary frequency control ability are decreased with wind power penetration growing continuously. In order to reduce the negative impact of wind power on system frequency, a variable parameters primary frequency control loop based on the conventional decoupling control is proposed in this paper. The factors influencing the performance of the control loop are analyzed, which including the gain of the control loop and wind speed. Based on that, the gain of the control loop is adjusted along with the change of wind speed and the size of power imbalance. The simulation result in matlab/simulink with the example of IEEE 9-bus system incorporated wind farm demonstrates the effectiveness of the proposed control strategy.
机译:DFIG(双馈感应发电机)的转子转速与系统频率解耦,导致DFIG对电力系统频率变化的响应性能较差。随着风力的不断增长,旋转惯量和主频率控制能力降低。为了减少风电对系统频率的负面影响,提出了一种基于常规解耦控制的变参数一次频率控制回路。分析了影响控制回路性能的因素,包括控制回路的增益和风速。基于此,控制环的增益随风速的变化和功率不平衡的大小而调整。在matlab / simulink中的仿真结果以包含风电场的IEEE 9总线系统为例,证明了所提出的控制策略的有效性。

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