Influence Pattern of VSC-HVDC Grid to the Power Grid on the Transient Stability

Huang Xifang, Liu Fusuo, Wang Yu, Wu Xuelian, Zhu Ling, Liu Ruitong
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Abstract

High voltage direct current transmission with voltage source converter(VSC-HVDC) grid-connected is an important trend in the future development of power grid. It is of great significance to reveal the influence of VSC-HVDC grid-connected on the transient stability of power grid. The external power characteristics of VSC-HVDC are equivalent to time-varying ground admittance. Based on the extended equal area criterion (EEAC), the influence of VSC-HVDC grid-connected admittance on the self-admittance and mutual admittance of synchronous generator internal potential node is studied, the quantitative relationship between the VSC-HVDC grid-connected admittance and the change of transient power angle stability margin is deduced. Based on this, the influence law of the active and reactive power on the transient stability of the power grid is quantitatively analyzed. Finally, the correctness of the conclusion is verified by simulation.
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VSC-HVDC电网对电网暂态稳定的影响规律
电压源变换器并网高压直流输电是未来电网发展的一个重要趋势。揭示直流-高压直流并网对电网暂态稳定的影响具有重要意义。VSC-HVDC的外部功率特性相当于时变接地导纳。基于扩展等面积准则(EEAC),研究了csc - hvdc并网导纳对同步发电机内电位节点自纳和互导纳的影响,推导了csc - hvdc并网导纳与暂态功率角稳定裕度变化的定量关系。在此基础上,定量分析了有功功率和无功功率对电网暂态稳定的影响规律。最后,通过仿真验证了结论的正确性。
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