湖南电力 ›› 2026, Vol. 46 ›› Issue (4): 89-95.doi: 10.3969/j.issn.1008-0198.2026.04.012

• 配电网与用能技术 • 上一篇    下一篇

中压配电线路不对称故障下低压分布式光伏耦合阻抗特性分析方法

于海东1,2, 刘洋1,2, 王峰1,2, 黄敏1,2, 刘文彬1,2   

  1. 1.国网山东省电力公司电力科学研究院,山东 济南 250003;
    2.山东省智能电网技术创新中心,山东 济南 250003
  • 收稿日期:2026-04-07 修回日期:2026-05-25 出版日期:2026-08-25 发布日期:2026-09-11
  • 通信作者: 于海东(1993),男,硕士,工程师,主要研究方向为分布式电源接入的配电网。
  • 作者简介:刘洋(1988),男,博士,高级工程师,主要研究方向为智能配电网。刘文彬(1996),男,硕士,工程师,主要研究方向为交直流配电网。
  • 基金资助:
    国网山东省电力公司科技项目(520626210016)

Analysis Method of Low Voltage Distributed Photovoltaic Coupling Impedance Characteristics Under Asymmetric Faults in Medium Voltage Distribution Lines

YU Haidong1,2, LIU Yang1,2, WANG Feng1,2, HUANG Min1,2, LIU Wenbin1,2   

  1. 1. State Grid Shandong Electric Power Company Research Institute, Jinan 250003, China;
    2. Shandong Smart Grid Technology Innovation Center, Jinan 250003, China
  • Received:2026-04-07 Revised:2026-05-25 Online:2026-08-25 Published:2026-09-11

摘要: 针对中压配电线路相间短路导致电压不对称,低压光伏逆变器阻抗突变引发线路谐振及方向保护误动缺乏定量分析的问题,提出一种考虑控制回路影响的逆变器正负序阻抗解析与误差量化评估方法。利用谐波线性化原理,对计及锁相环和电流控制环的逆变器正负序阻抗解析模型进行推导,使不对称故障下的阻抗频域演变及多频耦合机理理论上得以明晰。以不同控制参数及不对称电压幅值下的阻抗畸变特性为内容进行StarSim HIL半实物仿真实验,实验结果为:在100 Hz至800 Hz的主导频段内,所建模型与实测数据的正负序阻抗幅值平均绝对百分比误差均控制在5%以内,相位最大绝对误差不超过5°。这表明,所提出的解析模型具有较高的理论计算精度,能够准确揭示高次谐波倒灌与保护元件极化角偏移的内在物理机制。

关键词: 配电线路故障, 分布式光伏, 并网逆变器, 正负序阻抗, 保护误动

Abstract: To address the lack of quantitative analysis regarding line resonance and directional protection misoperation caused by sudden impedance changes of low-voltage grid-connected photovoltaic(PV) inverters under voltage asymmetry resulting from phase-to-phase short-circuit faults in medium-voltage distribution lines, an analytical method for inverter positive and negative sequence impedance and quantitative error evaluation considering control loop effects is proposed. Based on the harmonic linearization principle, the analytical models of positive and negative sequence impedance of the inverter, incorporating the phase-locked loop(PLL) and current control loop, are derived, which theoretically clarifies the impedance frequency-domain evolution and multi-frequency coupling mechanisms under asymmetric faults. Hardware-in-the-loop(HIL) simulation experiments based on StarSim are performed to investigate the impedance distortion characteristics under various control parameters and asymmetric voltage amplitudes. The experimental results show that in the dominant frequency band of 100 Hz to 800 Hz, the mean absolute percentage errors(MAPE) of the positive and negative sequence impedance magnitudes between the established model and the measured data are within 5%, and the maximum absolute error(MAE) of the phase does not exceed 5°. These results demonstrate that the proposed analytical model possesses high theoretical calculation accuracy and can accurately reveal the internal physical mechanisms of high-order harmonic back-injection and the polarization angle deviation of protection elements.

Key words: distribution line fault, distributed photovoltaic, grid-connected inverter, positive and negative sequence impedance, protection misoperation

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