基于双闭环控制的逆变器新型双环惯性锁相环
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TP273

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湖南省自然科学基金资助项目(2023JJ50176);湖南省教育厅科学研究基金资助重点项目(23A0441)


A Novel Double-Loop Inertia Phase-Locked Loop for Inverters Based on Double Closed-Loop Control
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    摘要:

    为解决电网扰动引起的逆变器不稳定、传统锁相环(PLL)响应速度慢、锁相精度差所带来的电压频率偏移和相位误差等问题,提出了一种基于电压电流双闭环控制的双环惯性锁相环(DPLL)。首先,运用Clarke和Park坐标变换理论分析了三相电压型PWM逆变器的主电路以及控制电路的工作原理和特性,推导了基于该逆变器下的控制策略。其次,提出了新型DPLL的结构和其应用于PWM逆变器的参数整定策略。与传统锁相环相比,新型DPLL在电网扰动的情况下具有更好的电网同步性能,通过双环控制结构(频率锁定环和相位锁定环)实现对逆变器频率和相位的追踪,由于相位角的惯性控制,DPLL具有良好的抗干扰能力,能够有效减少逆变器的频率偏移和相位误差。最后,通过仿真分析验证了所设计的新型DPLL的可行性和有效性。

    Abstract:

    To solve the problems of unstable inverters caused by power grid disturbances,slow response speed of traditional phase-locked loops (PLL),and poor phase-locked accuracy resulting in voltage frequency offset and phase errors,a double loop inertial phase-locked loop (DPLL) based on voltage and current double loop control is proposed. Firstly,the working principles and characteristics of the main circuit and control circuit of the three-phase voltage type PWM inverter were analyzed using Clarke and Park coordinate transformation theory,and the control strategy based on this inverter was derived. Secondly,the new structure of DPLL and its parameter tuning strategy for PWM inverters were proposed. Compared with traditional phase-locked loops,the DPLL has better grid synchronization performance under grid disturbances. The double loop control structure (frequency locked loop and phase locked loop) is used to track the frequency and phase of the inverter. Due to the inertia control of phase angle,DPLL has good anti-interference ability,which can effectively reduce the frequency offset and phase error of the inverter. Finally,the feasibility and effectiveness of the newly designed DPLL were verified through simulation analysis.

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曹世鹏,匡洪海,杨慧娴,李星宇,殷钰朋.基于双闭环控制的逆变器新型双环惯性锁相环[J].湖南工业大学学报,2026,40(1):48-55.

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  • 在线发布日期: 2025-11-26
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