弱电网下基于电流环与锁相环耦合效应的并网逆变器阻抗重塑控制策略
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1.河南理工大学电气工程与自动化学院 焦作 454003; 2.河南省煤矿装备智能检测与控制重点实验室 焦作 454003

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TM464;TN78

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河南省科技攻关项目(252102241061)、国家自然科学基金(U1804143)、河南省研究生教育改革与质量提升工程项目(YJS2025AL30)资助


Grid-connected inverter impedance reshaping control strategy based on the coupling effect of current loop and phase-locked loop in the power grid
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1.School of Electrical Engineering and Automation, Henan Polytechnic University,Jiaozuo 454003, China; 2.Henan Key Laboratory of Intelligent Detection and Control for Coal Mining Equipment,Jiaozuo 454003, China

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    摘要:

    针对锁相环、电网阻抗与电流控制环之间的动态相互作用导致系统稳定性降低的问题,本文首先利用赫尔维兹判据进行分析,该分析方法能够揭示电网阻抗波动对锁相环同步过程稳定裕度的内在影响机制,并且分析结果表明电网阻抗是基于锁相环的同步系统中一个重要的不稳定因素。然后,提出了电网阻抗自适应协同锁相环控制结构。基于所提改进锁相环控制结构,对电流控制环串联补偿相位校正环节,重塑并网逆变器输出阻抗,从而显著增强并网系统在弱电网下的鲁棒性。最后仿真与实验结果证实了理论分析的准确性,表明了改进策略具有可行性。

    Abstract:

    To address the issue of reduced system stability caused by the dynamic interaction between the phase-locked loop, grid impedance and current control loop, this paper first utilizes the Hurwitz criterion for analysis. This analytical method can reveal the inherent impact mechanism of grid impedance fluctuations on the stability margin of the phase-locked loop synchronization process, and the analysis results indicate that grid impedance is an important unstable factor in the phase-locked loop-based synchronization system. Then, a grid impedance adaptive collaborative phase-locked loop control structure is proposed. Based on the proposed improved phase-locked loop control structure, a phase correction link is added in series to the current control loop to reshape the output impedance of the grid-connected inverter, thereby significantly enhancing the robustness of the grid-connected system under weak grid conditions. Finally, simulation and experimental results confirm the accuracy of theoretical analysis, indicating the feasibility of the improved strategy.

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王震,杨明,孙杭.弱电网下基于电流环与锁相环耦合效应的并网逆变器阻抗重塑控制策略[J].电子测量技术,2026,49(5):9-18

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  • 在线发布日期: 2026-05-08
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