融合近似解析和物理信息的频率扰动传播在线计算方法
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TM712

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国家重点研发计划资助项目(2024YFB2408900)


Online calculation method for frequency disturbance propagation combining approximate analytical solution and physics-informed
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    摘要:

    电力系统故障引发的频率扰动以机电波形式传播,该过程直接影响频率稳定分析、低频减载等安全控制策略的决策。常规离线频率仿真法虽计算精度较高,但在面对复杂多变的新型电力系统时适应性较差、在线计算能力不足。针对此类问题,文中提出基于近似解析解和物理信息神经网络(physics-informed neural network, PINN)的频率传播在线计算方法。首先,建立机电扰动频率传播的偏微分方程模型,并通过工程简化推导频率扰动关于时间和位置的解析表达式,满足频率扰动快速计算要求,但简化后计算精度降低;随后,引入PINN以提高计算精度,将少量的仿真高精度数据与大量由解析生成的低精度数据作为样本,解决样本生成时间过长问题;进一步,在网络层中加入简化前的机电扰动频率传播模型作为物理约束,在满足计算速度的同时,提升计算精度和场景泛化性能;最后,利用RT-Lab和PyTorch搭建算例系统,仿真结果验证了所提方法的可行性与优越性。

    Abstract:

    Frequency disturbances caused by power system faults propagate in the form of electromechanical waves. This propagation process affects the frequency response analysis and decision-making of safety control measures such as frequency stability maintenance and under-frequency load shedding. The conventionally used offline simulation method offers high calculation accuracy, but it has limitations such as poor adaptability to complex and variable new power systems and insufficient online computing capability. An online calculation method is proposed for frequency propagation based on approximate analytical solutions and physics-informed neural network (PINN). Firstly, a partial differential equation model for the propagation of electromechanical disturbance frequencies is established. Through engineering simplifications, an analytical expression of frequency disturbance with respect to time and position is derived, which meets the requirement for fast calculation of frequency disturbances but suffers from reduced calculation accuracy due to the simplifications. Subsequently, PINN is introduced to improve calculation accuracy. A small amount of high-precision simulation data and a large amount of low-precision data quickly obtained from analytical solutions are used as samples, which solves the problem of excessive sample generation time. Furthermore, the electromechanical disturbance frequency propagation model before simplification is incorporated into the network layer as a physical constraint. This not only ensures fast calculation but also enhances the calculation accuracy and generalization performance across different operating scenarios. Finally, a case study system is built using RT-Lab and PyTorch. The feasibility and superiority of the proposed method are verified through simulation and comparative analysis.

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乔勇,陈中,颜云松,陈汹,李雅然,朱鑫要.融合近似解析和物理信息的频率扰动传播在线计算方法[J].电力工程技术,2026,45(6):1-11. QIAO Yong, CHEN Zhong, YAN Yunsong, CHEN Xiong, LI Yaran, ZHU Xinyao. Online calculation method for frequency disturbance propagation combining approximate analytical solution and physics-informed[J]. Electric Power Engineering Technology,2026,45(6):1-11.

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历史
  • 收稿日期:2025-10-12
  • 最后修改日期:2025-12-28
  • 在线发布日期: 2026-06-04
  • 出版日期: 2026-06-28
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