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基于最优分解的并网互联变流器系统谐波稳定性分析
Optimal Decomposition Based Harmonic Stability Analysis of Grid-Connected Interlinking Converter Systems Considering the Coupling Interaction
| 作者 | Haitao Zhang · Yao Qin · Qianwen Zhang · Fengting Wei · Xiuli Wang · Xifan Wang |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年6月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 多物理场耦合 可靠性分析 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 交直流互联变流器系统 谐波稳定性分析 右半平面极点 最优分解法 交直流耦合动态 |
语言:
中文摘要
作为典型的交直流混合拓扑,并网互联变流器系统受交流侧与直流侧耦合作用影响,其稳定性分析常采用交直流导纳模型。然而,交流-直流耦合项中可能出现右半平面极点,导致传统方法在特定条件下失效。为此,本文提出确保耦合项不含右半平面极点的充要条件,并在此基础上构建基于最优分解的谐波稳定性分析方法,提供两种可避免子环路增益中出现右半平面极点的分解方式,从而实现对系统谐波稳定性的更普适且可靠评估。进一步探讨了耦合交互引发振荡的机理,并通过Matlab/Simulink三个算例验证所提方法的有效性。结果表明,当交流侧稳定时,交直流耦合动态可使系统等效电阻由−2.6降至−20.4,加剧失稳风险;而当直流侧稳定时,耦合作用可将电阻由−5.5提升至−1.5,反而抑制振荡。
English Abstract
As a typical hybrid AC/DC power configuration, the grid-connected interlinking converter system operates under influences from both its AC and DC sides. Stability analysis for such systems often employs a hybrid AC/DC admittance model. However, the emergence of right half-plane (RHP) poles within the AC-DC coupling term can compromise the reliability of the conventional method under specific conditions. To deal with aforementioned problems, this paper introduces a sufficient and necessary condition to guarantee that the coupling term does not contain any RHP pole. Building on this, an optimal decomposition based harmonic stability analysis method is proposed, which provides two different decomposed ways that preclude potential RHP poles in the minor-loop gain. This allows for a more general and reliable analysis of the harmonic stability of the entire system. Furthermore, oscillation mechanisms associated with the coupling interaction are investigated. The effectiveness of the proposed method is validated through three cases using Matlab/Simulink. Results reveals that the AC-DC coupling dynamic can elevate instability risk by reducing system resistance from −2.6 to −20.4 when the AC side is stable, while decrease risk by increasing system resistance from −5.5 to −1.5 when the DC side is stable.
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SunView 深度解读
该交直流耦合谐波稳定性分析方法对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。研究揭示的耦合动态可使等效电阻从-2.6降至-20.4的失稳机理,为储能系统交直流侧协同控制设计提供理论依据。所提最优分解方法可应用于:1)ST系列PCS的交直流导纳建模与稳定性预判,避免弱电网并网时的宽频振荡;2)PowerTitan多机并联系统的耦合交互分析,优化直流母线阻尼控制参数;3)光储一体化系统中SG逆变器与储能变流器的协调控制策略。该方法可集成至iSolarCloud平台实现在线稳定性监测,提升系统可靠性,特别适用于高比例新能源接入场景的谐波抑制与振荡预警。