基于Koopman算子的新能源高占比电网暂态电压失稳识别方法
作者:
作者单位:

(1.内蒙古电力(集团)有限责任公司内蒙古电力科学研究院分公司,内蒙古自治区 呼和浩特 010020;2.哈尔滨理工大学电气与电子工程学院,黑龙江 哈尔滨 150080)

通讯作者:

张秀琦(1992—),女,硕士,高级工程师,主要从事新能源电力系统电磁暂态仿真方面的研究;E?mail:956040087@qq.com

中图分类号:

TM712

基金项目:

国家重点研发计划(2023YFB2405905)


Transient voltage instability identification based on Koopman operator in power grid with a high proportion of renewables
Author:
Affiliation:

(1. Inner Mongolia Power Research Institute Branch, Inner Mongolia Power (Group) Co., Ltd., Hohhot 010020, China;2. School of Electrical and Electronic Engineering, Harbin University of Science and Technology, Harbin 150080, China)

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    摘要:

    暂态电压失稳是威胁电力系统稳定的重要因素之一。新能源高占比电网动态无功储备与支撑能力的大幅降低,且并网新能源控制模型与运行特性复杂多变,常常导致故障发生后系统无功电压快速波动,使电网的电压稳定问题更突出。提出一种基于Koopman算子的暂态电压失稳识别方法,以及时避免电力系统因电压不稳定而造成的停电事故的发生。首先,基于故障后短时广域量测数据,提出Hankel矩阵增强动态模式分解(Hankel enhanced dynamic mode decomposition, HeDMD)的Koopman算子提取方法;其次,定义Koopman算子幅值,并按照降序排列获取主导Koopman模式;再次,基于主导Koopamn模式时域预测信号,计算最大李雅普诺夫指数(maximum Lyapunov exponent,MLE)识别暂态电压失稳;最后,对修改后Nordic32测试系统和中国电力科学研究院标准算例这2个新能源高占比电网进行实验仿真,验证了所提方法的有效性。与传统方法相比,所提方法在暂态电压失稳识别的准确性和快速性方面更具优势。仿真实验证明了所提方法在新能源高占比电网中的适应性。

    Abstract:

    Transient voltage instability is one of the important factors that threaten the stability of power system. The dynamic reactive power reserve and supporting capacity of the power grid with a high proportion of renewables decrease sharply, and the control models and operation characteristics of grid-connected renewables are diverse. Thus, the reactive power voltage of the system often fluctuates rapidly after a fault occurs, which leads to a more prominent voltage stability problem. In response, a transient voltage instability identification method based on the Koopman operator is proposed in this paper to avoid power system outage accidents caused by voltage instability in time. Firstly, the Koopman operator extraction method of Hankel matrix enhanced dynamic mode decomposition (HeDMD) is proposed with short-time wide-area measurement data after fault. Secondly, the amplitude of the Koopman operator is defined, and the dominant Koopman mode is obtained in descending order. Then, based on the time domain prediction signal of the dominant Koopman mode, the maximum Lyapunov exponent (MLE) is calculated to identify transient voltage instability. Finally, the effectiveness of the proposed method is verified using the Nordic32 test system and the standard system of China Electric Power Research Institute. Compared with the traditional method, the proposed method has more advantages in accuracy and rapidity of transient voltage instability identification. The simulation experiments prove its applicability in power grid with a high proportion of renewables.

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张秀琦,刘鸿清,王立强,等.基于Koopman算子的新能源高占比电网暂态电压失稳识别方法[J].电力科学与技术学报,2025,40(2):10-20,41.
ZHANG Xiuqi, LIU Hongqing, WANG Liqiang, et al. Transient voltage instability identification based on Koopman operator in power grid with a high proportion of renewables[J]. Journal of Electric Power Science and Technology,2025,40(2):10-20,41.

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  • 在线发布日期: 2025-06-06
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