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Mechanism Research on the Influence of Large Scale Wind Power Integration on Power System Angle Stability

机译:大规模风力集成对电力系统角度稳定性影响的机制研究

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Base on the equivalent external characteristics of doubly-fed induction generator(DFIG)during the period of the fault and the power characteristic equation of delivery system,a novel method of eliminating equivalent mutual impedance is proposed to research the influence mechanism of different wind power penetration rate,the SG dispatch pattern and siting of wind farms on system transient power angle stability(TPAS)under fault condition are researched.The results show that system power angle characteristics are improved with the increase of the wind power scale.However,when the wind power scale reaches a certain level,the power angle stability promptly deteriorates.The distance of wind farms siting away from a SG group with leading power angle,as well as the generation reduction of the SG group,plays an important role in the improvement of TPAS.The effectiveness of the proposed method is verified by the numerical simulations of the two-machine power system.
机译:基于在故障的故障周期和输送系统的功率特性方程期间双馈感应发生器(DFIG)的等效外部特性,提出了一种消除等效互阻抗的新方法,以研究不同风力渗透的影响机制研究了在故障条件下系统瞬态电源角稳定性(TPA)的风电场的SG调度模式和选址。结果表明,随着风电秤的增加,系统电源角度特性得到改善。然而,当风时电力量表达到一定水平,电源角度稳定性迅速恶化。距离具有前导力角的SG组的风电场远离SG组的距离以及SG组的产生在改进TPA方面起着重要作用。通过双机电力系统的数值模拟验证了所提出的方法的有效性。

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