中国电力 ›› 2025, Vol. 58 ›› Issue (11): 193-204.DOI: 10.11930/j.issn.1004-9649.202404032

• 新型电网 • 上一篇    下一篇

基于Kuramoto耦合振子理论的孤岛微网系统建模

李成1(), 张海昱2(), 宋蕙慧2(), 曲延滨2, 张新3, 李盈盈3   

  1. 1. 国家电投集团江苏电力有限公司,江苏 南京 210008
    2. 哈尔滨工业大学(威海)新能源学院,山东 威海 264209
    3. 国家电投集团科学技术研究院,北京 102200
  • 收稿日期:2024-04-07 修回日期:2024-12-09 发布日期:2025-12-01 出版日期:2025-11-28
  • 作者简介:
    李成(1966),男,高级工程师,从事电力系统电气一二次设备、新能源光伏风电运行维护研究,E-mail:ept_lc@163.com
    张海昱(2000),女,硕士研究生,从事多能互补系统和配电网优化调度研究,E-mail:zhanghaiyu17@163.com
    宋蕙慧(1983),女,通信作者,副教授,从事新能源发电、储能系统的非线性控制研究,E-mail:songhh@hitwh.edu.cn
  • 基金资助:
    国家自然科学基金资助项目(微网系统Kuramoto建模与基于能量成型的无缝切换调频控制方法研究,61773137)。

Islanded Microgrid System Modeling Based on Kuramoto Coupled Oscillator Theory

LI Cheng1(), ZHANG Haiyu2(), SONG Huihui2(), QU Yanbin2, ZHANG Xin3, LI Yingying3   

  1. 1. State Power Investment Group Jiangsu Electric Power Co., Ltd., Nanjing 210008, China
    2. School of New Energy, Harbin Institute of Technology at Weihai, Weihai 264209, China
    3. New Energy Technology Research Institute, State Power Investment Corporation Science and Technology Research Institute, Beijing 102200, China
  • Received:2024-04-07 Revised:2024-12-09 Online:2025-12-01 Published:2025-11-28
  • Supported by:
    This work is supported by National Natural Science Foundation of China (Kuramoto Modeling and Energy-Shaping Seamless Frequency Control for Microgrid, No.61773137)

摘要:

为深入揭示同步现象下多种复杂系统隐含的集体动力学规律,引入Kuramoto模型以描述具有自然频率分布的全局正弦耦合相振子系统的演化过程。本文从振子同步的角度提出了孤岛微网系统的Kuramoto建模方法,阐明了微网各单元频率同步的暂态特性。首先,深入分析微网各单元运行特性和Kuramoto振子动态特性的相似性,根据运行特性差异建立其Kuramoto模型。然后,进一步根据其惯性特性推导出按惯性分类的Kuramoto振子动态方程,并构建一、二阶混合非均匀Kuramoto模型对系统整体进行表征。最后,基于Simulink仿真平台搭建3机5节点的微网系统,验证了Kuramoto同步理论在微网建模中的适用性,揭示了Kuramoto模型频率同步与微网由暂态到稳态过程的相似性,为暂态稳定性的定量分析以及暂态能量函数的构造奠定理论基础。

关键词: 孤岛微网, 耦合振子, 暂态稳定性, 同步, Kuramoto模型

Abstract:

To further explore the implicit collective dynamics within the synchronization phenomenon of various complex systems, the Kuramoto model is introduced to describe the evolution of globally sinusoidal coupled phase oscillator systems with natural frequency distributions. This paper proposes a Kuramoto modeling method for island microgrid systems from the perspective of oscillator synchronization, clarifying the transient characteristics of frequency synchronization among different units in the microgrid. Firstly, a deep analysis is conducted to explore the similarities between the operational characteristics of each unit in the microgrid and the dynamic characteristics of Kuramoto oscillators, and a Kuramoto model is established based on the differences in operational characteristics. Then, the dynamic equations of Kuramoto oscillators classified by inertia are derived according to their inertial properties, and a first- and second-order mixed inhomogeneous Kuramoto model is constructed to represent the entire system. Finally, a 3-machine 5-node microgrid system is built on the Simulink simulation platform to verify the applicability of the Kuramoto synchronization theory in microgrid modeling. The similarity between the frequency synchronization of the Kuramoto model and the transient-to-steady-state process of the microgrid is revealed, laying a theoretical foundation for quantitative analysis of transient stability and the construction of transient energy functions.

Key words: islanded microgrid, coupled oscillators, transient stability, synchronization, kuramoto model


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