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基于双层优化模型的火-储协同调频性能研究

韩旭 仲宣宇 刘仲稳

热力发电2026,Vol.55Issue(2):75-85,11.
热力发电2026,Vol.55Issue(2):75-85,11.DOI:10.19666/j.rlfd.202511015

基于双层优化模型的火-储协同调频性能研究

Research on the performance of fire-storage coordinated frequency modulation based on a bi-level optimization model

韩旭 1仲宣宇 1刘仲稳2

作者信息

  • 1. 华北电力大学河北省低碳高效发电技术重点实验室,河北 保定 071003
  • 2. 中电华创电力技术研究有限公司,江苏 苏州 215009
  • 折叠

摘要

Abstract

[Objective]In order to better cope with the impact of the rapid development of new energy on the existing power grid structure and improve the stability and economy of thermal power unit operation,this paper proposes to construct a dual-layer optimization model of fire storage frequency regulation based on real-time power prediction of thermal power units and fuzzy control allocation of energy storage power.[Methods]The upper layer of the model utilizes frequency deviation decomposition and real-time power prediction of thermal power to optimize the power benchmark,effectively overcoming the response delay of the unit.The lower layer introduces a fuzzy logic control strategy to achieve adaptive and precise power allocation between the thermal unit and the energy storage system.On this basis,multi-objective genetic algorithm is used to optimize the energy storage capacity configuration scheme,and the frequency modulation performance under different control strategies is quantitatively evaluated based on indicators such as system frequency fluctuation.Taking a 600 MW thermal power unit as the research object,the optimal energy storage configuration was obtained through algorithm as follows:flywheel energy storage power of 8.5 MW and capacity of 1.3 MW·h,and lithium battery energy storage power of 3.6 MW and capacity of 14.6 MW·h.The total investment cost corresponding to this configuration is 2.027 7×109 yuan,and the actual income during the 400 s frequency modulation cycle is 850.95 yuan.[Results]After simulation verification using MATLAB/Simulink,it was found that under step disturbance,the dual layer optimization strategy of fire storage coordination reduces the frequency fluctuation of the system to 4.826×10-2 Hz,which is 38.53%lower than the independent frequency regulation of the fire power unit.The average absolute deviation of power fluctuation is reduced to 4.224 MW,which is 32.57%lower than the independent operation.Under continuous disturbance,the frequency fluctuation of the system decreased by 19.31%,the average absolute deviation of power fluctuation decreased by 78.71%,and the actual contribution of electricity increased by 0.527 MW·h.The results show that the thermal-storage coordinated dual layer optimization control strategy presented in this paper effectively mitigates system frequency and power fluctuations,thereby alleviating the frequency regulation pressure on thermal power units.Concurrently,it enhances the utilization efficiency of the energy storage system and improves the economic viability of frequency regulation services.[Conclusion]This research thus provides a novel technical direction for the flexible transformation of thermal power plants,enabling them to play a more supportive and complementary role in future power systems dominated by renewable energy sources.

关键词

预测控制/多元复合储能/双层优化控制/火电一次调频/评价指标

Key words

predictive control/multivariate composite energy storage/dual-layer optimization control/thermal power primary frequency regulation/evaluation index

引用本文复制引用

韩旭,仲宣宇,刘仲稳..基于双层优化模型的火-储协同调频性能研究[J].热力发电,2026,55(2):75-85,11.

基金项目

河北省高等学校科学研究项目青年拔尖项目(BJ2025053) (BJ2025053)

河北省自然科学基金(E2023502025) Hebei Province Higher Education Science Research Project Youth Elite Project(BJ2025053) (E2023502025)

Hebei Natural Science Foundation(E2023502025) (E2023502025)

热力发电

1002-3364

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