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高渗透率下基于并网逆变器阻抗重塑的锁相环设计方法 被引量:3

A Phase-Locked Loop Design Method Based on Impedance Remodeling of Grid-Connected Inverter under High Permeability
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摘要 针对锁相环、电网阻抗与并网逆变器相互耦合所引发的系统稳定性下降问题。首先,建立考虑电网阻抗的锁相环控制结构模型,通过分析锁相环闭环传递函数可知,电网阻抗会使锁相环系统产生右半平面闭环极点,严重影响锁相环与逆变器系统的稳定性。其次,通过分析逆变器系统输出阻抗,说明锁相环所引入的负阻抗是逆变器系统稳定裕度下降的主要原因。鉴于此,该文提出一种新型锁相环设计方法,理论分析表明,所提方法既能够保证高渗透率下锁相环具有高鲁棒性,又能够对逆变器系统输出阻抗进行重塑,有效拓宽系统对电网阻抗的适应范围。最后,通过仿真与实验验证所提新型锁相环设计方法的有效性。 Under high permeability,the phase-locked loop(PLL),grid impedance,and grid-connected inverter are coupled,seriously impacting the stable operation of the grid-connected inverter system based on synchronous control of PLL.Firstly,for the PLL control structure,grid impedance leads to the introduction of additional feedback loops in the PLL structure.When the grid impedance changes in a wide range,the PLL system will generate the right half plane pole,decreasing the stability of the PLL or even instability.Secondly,for the grid-connected inverter system,when PLL is considered,the additional negative impedance will be introduced into the output impedance of the system,which directly affects the amplitude and phase of the output impedance of the system,decreasing the stability margin of the grid-connected inverter system.Therefore,this paper takes the single-phase LCL filter grid-connected inverter under the weak current network as the research object and proposes a new PLL control structure with the dot connection current and dot connection voltage as input signals.The new PLL control structure uses the grid impedance measurement value and differential link to dynamically adjust the grid-connected current branch in the new PLL,limiting the grid impedance component in the PLL input signal.Meanwhile,the advance corrector is used to reshape the phase characteristics of the system output impedance.The influence of additional negative impedance on system stability was reduced.Then,the output phase Angle of the new PLL was corrected using an all-pass filter to ensure that the fundamental frequency phase was consistent before and after impedance remodeling.The robustness analysis of the grid-connected inverter system based on the new PLL control shows that the new PLL structure has high robustness and can reshape the output impedance of the inverter system to improve the phase angle of the output impedance at the intercept frequency.When the system is in a weak grid,the phase margin is greater than 30o,and the system robustness is guaranteed.In addition,the simulation and experimental verification show that the quality of the grid-connected current of the system is improved when the new PLL control is adopted.The voltage and current of the grid connection point do not have phase deviation,which meets the requirements of the grid connection point unit power factor.Moreover,the system has good dynamic performance,and effectively expands the adaptive range of the grid-connected inverter electrical system to the grid impedance under high permeability.In the next step,the grid voltage feedforward function,which can eliminate the influence of PLL,will be obtained by an equivalent transformation of the control block diagram of the grid-connected inverter.The phase characteristics of the output impedance of the inverter will be reshaped using grid voltage feedforward control to improve the stability of the grid-connected inverter system under high permeability.
作者 杨明 杨倬 李玉龙 赵月圆 朱军 Yang Ming;Yang Zhuo;Li Yulong;Zhao Yueyuan;Zhu Jun(Henan Key Laboratory of Intelligent Detection and Control of Coal Mine Equipment School of Electrical Engineering and Automation,Henan Polytechnic University,Jiaozuo 454003 China)
出处 《电工技术学报》 EI CSCD 北大核心 2024年第2期554-566,共13页 Transactions of China Electrotechnical Society
基金 国家自然科学基金资助项目(U1804143)。
关键词 高渗透率 并网逆变器 锁相环 阻抗重塑 鲁棒性 High permeability grid-connected inverters phase-locked loop impedance remodeling robustness
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