基于暂态惯量阻尼优化的VSG多机振荡抑制研究
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(1.长沙理工大学电气与信息工程学院 ,湖南 长沙 410114;2.国网冀北电力有限公司电力科学研究院 ,北京 100054;3.北京四方继保工程技术有限公司 ,北京 100085)

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通讯作者:

夏向阳(1968—),男,博士,教授,主要从事储能系统安全运行与优化控制等方面的研究;E-mail:307351045@qq.com

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TM761

基金项目:

国家自然科学基金(51977014)


Research on oscillation suppression of multi -VSG based on transient inertia and damping optimization
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(1.School of Electrical & Information Engineering , Changsha University of Science & Technology , Changsha 410114, China; 2. Electric Power Research Institute , State Grid Jibei Electric Power Co ., Ltd., Beijing 100054, China; 3. Beijing Sifang Jibao Engineering Technology Co ., Ltd., Beijing 100085, China)

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    摘要:

    大规模新能源场站中多台虚拟同步发电机 (virtual synchronous generator,VSG)的并联运行可能会引起系统功频振荡问 题。为更好地协调多单元运行,提升振荡抑制效果,提出一种优化暂态惯量阻尼的振荡抑制策略。首先,基于小信号模型,揭示系统振荡机理与固定参数对稳定性的影响;其次,引入系统惯性中心,并将其作为全局协调基准,根据各 VSG频率偏离惯性中心的程度及其变化率来优化惯量与阻尼特性,加速系统暂态能量衰减,有效减小负载扰动下各 VSG频率差异,在不影响稳态运行的前提下,大幅缩短暂态过程中系统调节时间,降低冲击功率;再次,基于李雅普诺夫定理证明所提策略下系统的稳定性;最后,在Simulink 仿真软件和 RT-LAB 半实物平台上验证所提策略的有效性。该研究可为大规模新能源场站中的多台虚拟同步发电机的并联运行提供理论支持与参考。

    Abstract:

    The parallel operation of multiple virtual synchronous generators (VSGs) in large-scale renewable energy power stations may lead to the system ’s power frequency oscillation issues.To better coordinate multi-unit operation and enhance oscillation suppression,an oscillation suppression strategy optimizing transient inertia and damping is proposed.Firstly,based on a small-signal model,the oscillation mechanism and the impact of fixed parameters on stability are elucidated.Secondly,the system inertia centwe is introduced as a global coordination reference.Inertia and damping characteristics are optimized based on each VSG ’s frequency deviation from the inertia center and its rate of change.This accelerates transient energy decay,effectively minimizes frequency differences among VSGs under load disturbances,and significantly reduces system regulation time during the transient process while lowering impact power without compromising steady-state operation.Thirdly,the stability of the proposed strategy is demonstrated using Lyapunov ’s theorem.Finally,the effectiveness of the proposed strategy is validated through simulations in SIMULINK and on the RT-LAB hardware-in-the-loop platform.This research provides theoretical support and reference for the parallel operation of multiple VSGs within large-scale renewable energy power stations.

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引用本文

刘俊翔,夏向阳,巩宇,等.基于暂态惯量阻尼优化的VSG多机振荡抑制研究[J].电力科学与技术学报,2025,40(6):67-76.
LIU Junxiang, XIA Xiangyang, GONG Yu, et al. Research on oscillation suppression of multi -VSG based on transient inertia and damping optimization[J]. Journal of Electric Power Science and Technology,2025,40(6):67-76.

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  • 收稿日期:2024-12-31
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  • 在线发布日期: 2026-02-03
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