房国振, 陈武晖, 李柯江, 许莹莹, 郭小龙, 常喜强, 刘德福. 多逆变器并网系统谐振强度评估及其关键节点阻抗辨识方法[J]. 电网技术, 2025, 49(5): 1962-1971. DOI: 10.13335/j.1000-3673.pst.2024.0157
引用本文: 房国振, 陈武晖, 李柯江, 许莹莹, 郭小龙, 常喜强, 刘德福. 多逆变器并网系统谐振强度评估及其关键节点阻抗辨识方法[J]. 电网技术, 2025, 49(5): 1962-1971. DOI: 10.13335/j.1000-3673.pst.2024.0157
FANG Guozhen, CHEN Wuhui, LI Kejiang, XU Yingying, GUO Xiaolong, CHANG Xiqiang, LIU Defu. Resonance Strength Evaluation and Key Node Impedance Identification Method for Multi-inverter Grid-connected Systems[J]. Power System Technology, 2025, 49(5): 1962-1971. DOI: 10.13335/j.1000-3673.pst.2024.0157
Citation: FANG Guozhen, CHEN Wuhui, LI Kejiang, XU Yingying, GUO Xiaolong, CHANG Xiqiang, LIU Defu. Resonance Strength Evaluation and Key Node Impedance Identification Method for Multi-inverter Grid-connected Systems[J]. Power System Technology, 2025, 49(5): 1962-1971. DOI: 10.13335/j.1000-3673.pst.2024.0157

多逆变器并网系统谐振强度评估及其关键节点阻抗辨识方法

Resonance Strength Evaluation and Key Node Impedance Identification Method for Multi-inverter Grid-connected Systems

  • 摘要: 在高比例新能源电力系统中,并网逆变器与电网的动态交互作用使得系统谐波谐振问题日趋复杂。为了对系统的谐波谐振进行有效评估,提出一种多逆变器并网系统谐振强度评估及其关键节点阻抗辨识的方法。首先,基于模态阻抗的等效RLC并联电路定义表征谐振模态阻尼特性的品质因数指标,应用奈奎斯特图计算得到各谐振模态的品质因数,通过分析其数值大小和正负性来评估多逆变器并网系统谐振强度。然后,推导模态阻抗与节点阻抗的关系,定义表征谐振模态在对应节点阻抗的可激励性和可观测性的参与因子指标,通过对比谐振模态对各节点阻抗的参与因子大小来识别谐振发生的关键节点。最后,算例结果验证了所提方法的正确性和有效性。

     

    Abstract: In a high proportion of renewal energy power systems, the dynamic interaction between grid-connected inverters and the power grid makes the problem of harmonic resonance in the system increasingly complex. To effectively evaluate the harmonic resonance of the system, this paper proposes a method for evaluating the resonance strength of a multi-inverter grid-connected system and identifying the impedance of its key nodes. Firstly, based on the equivalent RLC parallel circuit with modal impedance, a quality factor index is defined to characterize the damping characteristics of resonant modes. The quality factors of each resonant mode are calculated using the Nyquist plot, and the resonance strength of the multi-inverter grid-connected system is evaluated by analyzing their numerical values and positivity and negativity. Then, the relationship between modal impedance and node impedance is derived, and a participation factor index is defined to characterize the excitability and observability of the resonant mode at the corresponding node impedance. The key nodes where resonance occurs are identified by comparing the participation factors of the resonant mode on the impedance of each node. Finally, the numerical results validate the correctness and effectiveness of the proposed method.

     

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