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Publishing Language: Chinese | Open Access

Mitigating subsynchronous resonance using supplementary damping control of battery energy storage in a wind-thermal-storage bundling system

Yongqiang HU1Xi WANG2Linlin WU3Xiaorong XIE2Haitang BU1Tianyu SU3
Beifang Duolun Renewable Energy Co., Ltd., Xilingol League 027200, China
Tsinghua University (State Key Laboratory of Power System Operation and Control), Beijing 100084, China
North China Electric Power Research Institute Co., Ltd., Beijing 100045, China
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Abstract

Subsynchronous resonance (SSR) caused by the interaction between thermal power generators and series-capacitor-compensated AC lines, has been a significant concern in China's power grids. An energy storage supplementary damping control (SDC) to suppress SSR is proposed in this paper. SDC enables local feedback, and utilizes the coupling between generators and power grid to enhance the overall damping level. Firstly, the target system is modelled and the mechanism and characteristics of its SSR problem are clarified through frequency and time-domain analyses. Then, the supplementary damping control strategy is established based on battery energy storage system (BESS). Its control parameters and adding positions are optimized, and the impact of SDC's control capacity on BESS's normal functions is analyzed. Finally, the effectiveness and feasibility of the proposed SDC are verified through electromagnetic transient simulations with a real-world project, i.e., the Shangdu wind-thermal-energy storage bundling system. The simulation results also show that the proposed SDC can effectively address the SSR issue with reduced control cost and equipment investment cost, serving as a more economical solution.

CLC number: TM712 Document code: A

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Electric Power Engineering Technology
Pages 141-149

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Cite this article:
HU Y, WANG X, WU L, et al. Mitigating subsynchronous resonance using supplementary damping control of battery energy storage in a wind-thermal-storage bundling system. Electric Power Engineering Technology, 2026, 45(2): 141-149. https://doi.org/10.12158/j.2096-3203.2026.02.015

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Received: 15 April 2024
Revised: 24 October 2025
Published: 28 February 2026
© After publication of the article, the authors shall own the right of signature. 2026.

The authors can use or share the published article under the Attribution-Non Commercial 4.0 International (CC BY-NC 4.0) license.