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基于变换器电力系统中模态谐振的机理分析
Mechanism Analysis of Modal Resonance in Converter-Based Power Systems
| 作者 | Xianyu Zhou · Siqi Bu |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 参与因子转移 模态共振 模态交互 参与因子转移分析与控制 电力系统小信号稳定性 |
语言:
中文摘要
可再生能源与电力电子设备的不断融合因开环模态谐振带来了各种振荡问题,而开环模态谐振的本质机理尚未完全探明。为此,本文首先提出参与因子转移(PFT)的概念,揭示了开环模态交互中参与因子转移的存在以及模态谐振中不可追溯的参与因子转移的必要性。其次,开展参与因子转移分析(PFT分析),研究参与因子转移对模态交互的贡献。提出参与因子转移现象的两类情况,即参与因子守恒定律(PFCL)和借用参与因子定律(BPFL),用以解释电力系统中模态交互的本质机理。提出参与因子转移指标(PFTI),以判断参与因子转移是否可追溯,进而识别影响模态交互的主导状态变量。此外,基于参与因子转移分析提出参与因子转移控制(PFT控制),以解决模态谐振问题。最后,在两个基于变流器的电力系统中验证了所提出的参与因子转移分析与控制(PFTAC)方法,该方法不仅验证了参与因子转移在模态交互中的关键作用,还提高了电力系统的小干扰稳定性。
English Abstract
The increasing integration of renewable energy and power electronics has brought various oscillation issues due to open-loop modal resonance, while the essential mechanism of open-loop modal resonance has not been fully discovered yet. In this connection, this paper firstly proposes the concept of participation factor transition (PFT), revealing the existence of PFT in open-loop modal interactions and the necessity of untraceable PFT in modal resonance. Secondly, participation factor transition analysis (PFT analysis) is conducted to investigate the contribution of PFT to modal interactions. Two categories of the PFT phenomenon, named participation factor conservation law (PFCL) and borrowing participation factor law (BPFL), are proposed to explain the essential mechanism of modal interactions in power systems. Participation factor transition index (PFTI) is proposed to determine whether PFT is traceable and then identify the dominant state variables that affect the modal interactions. Additionally, participation factor transition control (PFT control) is proposed to solve the modal resonance based on PFT analysis. Finally, the proposed participation factor transition analysis and control (PFTAC) are validated in two converter-based power systems, which not only verifies the critical role of PFT in modal interactions but also improves the small-signal stability of the power system.
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SunView 深度解读
该模态谐振机理研究对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。文章揭示的源-网交互作用下的模态耦合机制,可直接指导阳光电源优化构网型GFM控制器参数设计,抑制弱电网并网时的次同步/超同步振荡。阻抗模型与状态空间结合的分析方法,可应用于SG系列光伏逆变器的多机并联场景,预测并避免集电线路谐振风险。该理论为阳光电源开发智能阻尼控制算法、提升iSolarCloud平台的振荡预警能力提供依据,增强储能和光伏系统在高比例新能源电网中的稳定运行能力。