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构网型变流器多模态低频振荡互阻尼排斥机制研究
Research on the Mutual Damping Repulsion Mechanism of Multi-Modal Low-Frequency Oscillations in Grid-Forming Converter
| 作者 | Letian Wang · Shiyun Xu · Huadong Sun · Jingtian Bi · Peng Han |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年7月 |
| 卷/期 | 第 41 卷 第 1 期 |
| 技术分类 | 控制与算法 |
| 技术标签 | 构网型GFM 虚拟同步机VSG 弱电网并网 模型预测控制MPC |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 |
语言:
中文摘要
本文揭示了构网型变流器中同步环与直流电压环耦合引发的多模态低频振荡互阻尼排斥机理,指出虚拟阻尼提升同步环稳定性可能恶化直流环振荡,该现象通过阻尼转矩法、特征值及时域仿真验证。
English Abstract
The coupling between the synchronization loop (SC) and DC voltage control loop (DVC) of a virtual synchronous generator (VSG) controlled grid-forming converter (GFM) is prone to cause multi-modal low-frequency oscillations (LFO). These multi-modal oscillations consist of SC dominant LFO (SC- LFO) and DVC dominant LFO (DVC-LFO). In this paper, we investigate the mutual damping repulsion effect of multi-modal LFOs and reveal the mechanisms behind such phenomena by means of the damping torque method in the frequency domain. Analytical studies have found that, as the self-damping levels of SC and DVC increase, they exert incremental negative damping torque on each other. This interaction leads to an inverse variation in damping regulation of SC-LFO and DVC-LFO during the tuning of SC or DVC dynamic, ultimately causing the mutual repulsion phenomenon. Moreover, it has been proved that virtual damping in SC is not universally effective for LFOs stabilizing in GFM converter. Increased virtual damping ensures SC-LFO stability but may induce instability of DVC-LFO due to mutual repulsion. Finally, the analytical results are corroborated by both eigenvalue and time domain analysis.
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SunView 深度解读
该研究直接关联阳光电源ST系列PCS、PowerTitan及新一代构网型光储一体机在弱电网/孤岛场景下的稳定运行。VSG参数耦合引发的互斥失稳风险,影响PowerStack在新能源高渗透配网中的黑启动与调频性能。建议在iSolarCloud平台中嵌入多模态阻尼协同整定模块,并在ST-3125/3400KTL等构网型逆变器固件中优化VSG双环动态解耦策略,避免因单环过阻尼导致另一模态失稳。