[1]张程,陈昌亮.直驱风场经柔直并网的次同步振荡建模与分析[J].福建工程学院学报,2023,21(04):363-369.[doi:10.3969/j.issn.1672-4348.2023.04.009]
ZHANG Cheng,CHEN Changliang.Modeling and analysis of subsynchronous oscillation in a direct drive wind farm connected to the grid through VSCHVDC system[J].Journal of FuJian University of Technology,2023,21(04):363-369.[doi:10.3969/j.issn.1672-4348.2023.04.009]
点击复制
直驱风场经柔直并网的次同步振荡建模与分析()
《福建工程学院学报》[ISSN:2097-3853/CN:35-1351/Z]
- 卷:
-
第21卷
- 期数:
-
2023年04期
- 页码:
-
363-369
- 栏目:
-
- 出版日期:
-
2023-08-25
文章信息/Info
- Title:
-
Modeling and analysis of subsynchronous oscillation in a direct drive wind farm connected to the grid through VSCHVDC system
- 作者:
-
张程; 陈昌亮
-
福建理工大学电子电气与物理学院
- Author(s):
-
ZHANG Cheng1; 2; CHEN Changliang
-
School of Electronic, Electrical Engineering and Physics, Fujian University of Technology
-
- 关键词:
-
直驱风电场; 次同步振荡; 频谱分析; 时域仿真; 特性分析
- Keywords:
-
direct drive wind farm; subsynchronous oscillation; spectrum analysis; timedomain simulation; characteristic analysis
- 分类号:
-
TM743;TM614
- DOI:
-
10.3969/j.issn.1672-4348.2023.04.009
- 文献标志码:
-
A
- 摘要:
-
针对直驱风电场经串补及柔性直流输电引起的次同步振荡问题,建立了直驱风电场经VSC?HVDC的系统仿真模型。利用该模型模拟了次同步振荡现象,并用频谱分析验证了其正确性。利用时域仿真法,设置不同的场景分析风机网侧换流器的内环控制参数、串补度以及直流侧电容对直驱风机经柔直输电并网系统的稳定性影响。针对减小次同步振荡危害,结合实际工程提出建议。
- Abstract:
-
A system simulation model for direct drive wind farms through VSCHVDC was established to address the problem of subsynchronous oscillation caused by series compensation and flexible DC transmission. The subsynchronous oscillation phenomenon was simulated using this model, and its correctness was verified through spectral analysis. By using timedomain simulation method and setting different scenarios, analysis was made on the influence of the inner loop control parameters, series compensation degree, and DC side capacitance of the wind turbine grid side converter on the stability of the direct drive wind turbine grid connected system through flexible direct transmission. Suggestions are put forward to reduce the harm of subsynchronous oscillation based on practical engineering.
更新日期/Last Update:
2023-08-25