秦川, 梁浩, 谢欢, 赵天骐, 赵焱, 易姝娴, 张广韬. 提升新能源场站分布式调相机暂态稳定的励磁附加控制方法[J]. 电网技术, 2025, 49(1): 417-425. DOI: 10.13335/j.1000-3673.pst.2024.0598
引用本文: 秦川, 梁浩, 谢欢, 赵天骐, 赵焱, 易姝娴, 张广韬. 提升新能源场站分布式调相机暂态稳定的励磁附加控制方法[J]. 电网技术, 2025, 49(1): 417-425. DOI: 10.13335/j.1000-3673.pst.2024.0598
QIN Chuan, LIANG Hao, XIE Huan, ZHAO Tianqi, ZHAO Yan, YI Shuxian, ZHANG Guangtao. An Additional Excitation Control Method for Improving the Transient Stability of Distributed Synchronous Condensers in Renewable Energy Station[J]. Power System Technology, 2025, 49(1): 417-425. DOI: 10.13335/j.1000-3673.pst.2024.0598
Citation: QIN Chuan, LIANG Hao, XIE Huan, ZHAO Tianqi, ZHAO Yan, YI Shuxian, ZHANG Guangtao. An Additional Excitation Control Method for Improving the Transient Stability of Distributed Synchronous Condensers in Renewable Energy Station[J]. Power System Technology, 2025, 49(1): 417-425. DOI: 10.13335/j.1000-3673.pst.2024.0598

提升新能源场站分布式调相机暂态稳定的励磁附加控制方法

An Additional Excitation Control Method for Improving the Transient Stability of Distributed Synchronous Condensers in Renewable Energy Station

  • 摘要: 新能源场站部署分布式调相机可有效提升新能源送出能力,但故障下调相机与新能源机组相互耦合易引发暂态功角稳定问题,改进调相机自身励磁控制策略是解决本问题的经济有效手段。首先,构造了调相机能量函数,利用李亚普诺夫第二方法分析了调相机有功功率、转速四象限波动下有利于暂态稳定的功率调整需求;其次,阐明了调相机励磁控制对电磁功率影响的机理,提出以调相机有功功率过零点及转速过额定点为判据的励磁附加控制策略,通过叠加机端电压附加给定值实现调相机暂态稳定调节;最后,在国内某主流型号励磁控制器完成开发应用,通过硬件在环仿真测试验证了所提励磁附加控制方法的有效性。结果表明,该方法在调相机转子减速和加速过程均有明显提升暂态功角稳定的效果。

     

    Abstract: Installing distributed synchronous condensers (SC) in renewable energy stations can improve the new energy delivery capacity. However, the coupling between the SC and the new energy unit during the fault easily causes transient power angle stability problems. Improving the SC's excitation control strategy is an economical and effective means of solving this problem. Firstly, the energy function of the SC is constructed, and the power adjustment requirements conducive to transient stability under the four-quadrant fluctuation of the active power and speed of the SC are analyzed by Lyapunov's second method. Secondly, the influence mechanism of excitation control on electromagnetic power is explained. An additional excitation control strategy is proposed based on active power zero crossing and speed overrated points. The transient stability of the SC is realized by superimposing the additional reference value of the terminal voltage. Finally, a mainstream type of excitation controller is developed and applied in China, and the effectiveness of the proposed excitation additional control method is verified by a hardware-in-the-loop simulation test. The results show that the proposed method can significantly improve the transient power angle stability during both deceleration and acceleration of the rotor.

     

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