← 返回
柔性电网的叠加定理
Superposition Theorem for Flexible Grids
| 作者 | Antoine Marot · Noureddine Henka · Benjamin Donnot · Sami Tazi |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年8月 |
| 卷/期 | 第 41 卷 第 1 期 |
| 技术分类 | 系统并网技术 |
| 技术标签 | 并网逆变器 弱电网并网 构网型GFM 模型预测控制MPC |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 |
语言:
中文摘要
本文扩展叠加定理以支持动态拓扑变化,利用分布因子实现线路投切、母线分裂/合并等场景下的快速潮流分解与安全分析,在实时调控和故障响应中提升10倍以上计算效率。
English Abstract
Flexible grid topology has become a key enabler of flexibility in modern power grids, particularly for congestion management. Studying the effects of combinatorial topological changes is therefore of significant interest, though this remains computationally intensive in most cases. To address this, we revisit the superposition theorem, which has served as the foundation for the decomposition of numerous power system problems over the past decades, particularly those involving changes in generation and loads. However, its application has traditionally been restricted to fixed grid topologies, breaking down as soon as a topological change occurs. In this article, we extend the superposition theorem to accommodate varying grid topologies by leveraging well-known distribution factors. This unified framework applies to all types of topological changes, including line disconnection and reconnection, as well as bus splitting and merging. We provide numerical experiments to validate our approach and highlight its advantages in terms of speed-up and interpretability. Finally, we demonstrate its application in two key use cases: remedial action search and updated security analysis following a topological change. Our results show more than an order-of-magnitude speed-up for real-sized grids compared to the fastest power flow solvers.
S
阳光知情 深度解读
该研究对阳光电源ST系列PCS、PowerTitan储能系统及组串式逆变器在弱电网/构网型(GFM)运行下的快速拓扑自适应控制具有重要价值。可支撑iSolarCloud平台实现实时安全边界更新与 Remedial Action 自动推荐,提升光储系统在电网重构、故障隔离等场景下的动态响应能力。建议将该定理嵌入PCS嵌入式控制器的在线安全评估模块,并与iSolarCloud联合开发拓扑感知型AGC/AVC策略。