电工技术学报  2024, Vol. 39 Issue (8): 2553-2566    DOI: 10.19595/j.cnki.1000-6753.tces.230236
电力电子 |
弱电网下基于电网电压前馈的并网逆变器阻抗重塑控制策略
杨明, 杨倬, 李玉龙, 朱军
河南理工大学电气工程与自动化学院河南省煤矿装备智能检测与控制重点实验室 焦作 454003
Impedance Remodeling Control Strategy of Grid-Connected Inverter Based on Feedforward Voltage under Weak Grid
Yang Ming, Yang Zhuo, Li Yulong, 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
全文: PDF (3828 KB)   HTML
输出: BibTeX | EndNote (RIS)      
摘要 弱电网下,锁相环在基波以上频段引入的负阻特性,会降低系统输出阻抗的相位,严重影响系统稳定性。鉴于此,该文通过系统控制框图等效变换,推导得到可以消除锁相环负阻特性的电网电压前馈函数,进而提出一种基于电网电压前馈控制的并网逆变器阻抗重塑控制策略。同时,为了提高该策略的普适性,该文利用函数近似和多目标约束为电网电压前馈函数的优化提供两种设计方法,并从系统基波电流跟踪性能、并网功率因数等方面进行误差分析,从而证明其函数优化设计方法的可行性。理论分析表明,优化后的电网电压前馈控制策略,可以有效地对系统输出阻抗相位特性进行重塑,很大程度上拓宽了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控制策略的有效性。
服务
把本文推荐给朋友
加入我的书架
加入引用管理器
E-mail Alert
RSS
作者相关文章
杨明
杨倬
李玉龙
朱军
关键词 弱电网并网逆变器阻抗重塑锁相环稳定性    
Abstract:Under weak grid conditions, the negative impedance characteristics introduced by the phase- locked loop (PLL) in the frequency range above the fundamental frequency can reduce the phase of the output impedance of grid-tied inverter systems, thereby severely affecting the stability of the system. Additionally, grid voltage feedforward control has gained widespread attention in grid-tied inverter control due to its simplicity, effectiveness, and ease of implementation. Among them, research on grid-tied inverter impedance reshaping has been widely applied.
In order to seek a simple and effective control strategy to improve the stability of the system, this paper focuses on single-phase LCL-filtered grid-tied inverters under weak grid conditions. By performing system control diagram equivalence transformation, the grid voltage feedforward function that eliminates the impact of the PLL on the system's output impedance is derived. Subsequently, a grid voltage feedforward control-based grid-tied inverter impedance reshaping control strategy is proposed. Furthermore, the optimization design of the grid voltage feedforward function is achieved using function approximation and multi-objective constraint methods, making the proposed control strategy more feasible and universally applicable.
The analysis of the robustness of grid-tied inverter systems based on grid voltage feedforward control shows that whether using function approximation or multi-objective constraint methods, this control strategy can reshape the inverter output impedance, improve the phase angle at the crossover frequency, and ensure that the system has a phase margin greater than 30° under weak or fragile grid conditions. It guarantees the robustness of the system without additional phase compensation stages, and has negligible impact on the fundamental current tracking performance of the system.
Simulation and experimental verification demonstrate that, regardless of whether function approximation or multi-objective constraint methods are used, the grid current quality of the system based on grid voltage feedforward control has been significantly improved. The grid-tied point voltage and current exhibit no phase deviation, satisfying the requirement of the unity power factor grid connection. Additionally, the system exhibits excellent dynamic performance, effectively expanding the adaptability range of grid-tied inverter systems considering the PLL under weak grid conditions.
The optimization design method of the feedforward function based on function approximation facilitates the acquisition of control parameters, greatly improving the feasibility of the grid voltage feedforward control strategy. However, its effect on reshaping the phase characteristics of the system's output impedance is reduced. On the other hand, the method based on multi-objective constraints can adjust and supplement the constraint conditions according to different engineering standards and specifications, enabling the free design of the feedforward function and enhancing the universality of this control strategy. Its drawback lies in high computational complexity and feedforward function parameter acquisition. In practical engineering, the method selection can be made according to actual circumstances.
Key wordsWeak grid    grid-connected inverter    impedance remodeling    phase-locked loop    stability   
收稿日期: 2023-03-01     
PACS: TM464  
基金资助:国家自然科学基金资助项目(U1804143)
通讯作者: 杨 倬 男,1999年生,硕士研究生,研究方向为并网逆变器控制及稳定性分析。E-mail: 1135229637@qq.com   
作者简介: 杨 明 男,1982年生,博士,副教授,研究方向为新能源并网发电技术、电能质量控制、虚拟同步发电机等。E-mail: yangming0391@163.com
引用本文:   
杨明, 杨倬, 李玉龙, 朱军. 弱电网下基于电网电压前馈的并网逆变器阻抗重塑控制策略[J]. 电工技术学报, 2024, 39(8): 2553-2566. Yang Ming, Yang Zhuo, Li Yulong, Zhu Jun. Impedance Remodeling Control Strategy of Grid-Connected Inverter Based on Feedforward Voltage under Weak Grid. Transactions of China Electrotechnical Society, 2024, 39(8): 2553-2566.
链接本文:  
https://dgjsxb.ces-transaction.com/CN/10.19595/j.cnki.1000-6753.tces.230236          https://dgjsxb.ces-transaction.com/CN/Y2024/V39/I8/2553