徐式蕴, 李宗翰, 赵兵, 孙华东. 新型电力系统标准算例(一):功角稳定CSEE-RAS[J]. 中国电机工程学报, 2024, 44(15): 5973-5984. DOI: 10.13334/j.0258-8013.pcsee.230534
引用本文: 徐式蕴, 李宗翰, 赵兵, 孙华东. 新型电力系统标准算例(一):功角稳定CSEE-RAS[J]. 中国电机工程学报, 2024, 44(15): 5973-5984. DOI: 10.13334/j.0258-8013.pcsee.230534
XU Shiyun, LI Zonghan, ZHAO Bing, SUN Huadong. Benchmark for AC-DC Hybrid System With High Penetration of Renewables (I): Rotor Angle Stability CSEE-RAS[J]. Proceedings of the CSEE, 2024, 44(15): 5973-5984. DOI: 10.13334/j.0258-8013.pcsee.230534
Citation: XU Shiyun, LI Zonghan, ZHAO Bing, SUN Huadong. Benchmark for AC-DC Hybrid System With High Penetration of Renewables (I): Rotor Angle Stability CSEE-RAS[J]. Proceedings of the CSEE, 2024, 44(15): 5973-5984. DOI: 10.13334/j.0258-8013.pcsee.230534

新型电力系统标准算例(一):功角稳定CSEE-RAS

Benchmark for AC-DC Hybrid System With High Penetration of Renewables (I): Rotor Angle Stability CSEE-RAS

  • 摘要: 含高比例新能源交直流混联电网的稳定特性已发生深刻变化,功角稳定依然是威胁系统安全运行的关键问题,相关研究对标准算例的真实性、合理性及代表性提出更高的要求。该文根据实际电网拓扑和数据,构建适用于功角稳定特性研究的功角稳定机电暂态仿真算例(Chinese society for electrical engineering-rotor angle stability,CSEE-RAS),该系统以500 kV为主网架,包含2个区域、1个交流通道、1个直流通道。提供2种运行方式,分别对应动态、暂态功角稳定场景,上述场景新能源出力占比均在50%以上。考虑新能源出力占比、机组接入位置和控制策略等因素,量化不同因素对稳定水平的影响。敏感性分析结果表明,该算例较为全面地反映了机电暂态尺度下的不同功角稳定特性,且具有灵活的拓展能力,可为功角稳定分析与控制的相关研究提供基础平台,有助于不同结论的横向比较和研究人员科研效率的提升。

     

    Abstract: The stability characteristics of AC-DC hybrid power grids with high proportion of renewable energy have profound changes, and rotor angle stability remains a key issue that threatens the operation safety. Related studies have required higher demands on authenticity, rationality and representativeness of the benchmark test system. In this paper, the rotor angle stability benchmark test system, designed specifically for electromagnetic transient simulation, is constructed based on the practical topology and data. The main grid voltage level of aforementioned benchmark is 500 kV and this benchmark includes 2 regions, i.e. 1 AC transmission channel and 1 DC transmission channel. Two basic operation modes are provided, corresponding to dynamic and transient rotor angle stability, respectively. The penetration level of renewable energy in the above operation modes is above 50%. To study the influence of different factors on the rotor angle stability level, the penetration of renewable energy, generator location and control strategy are used to obtain the quantitative analysis. Then, sensitivity analysis results show that this electromagnetic transient simulation benchmark is able to comprehensively reflect the characteristics of different rotor angle stability, and it has flexible extensibility. Sharing the benchmark test system can provide a basic platform for related research of rotor angle stability analysis and control, and contribute to the horizontal comparison of different conclusions as well as the improvement of research efficiency.

     

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