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储能系统技术 并网逆变器 储能系统 单相逆变器 ★ 5.0

重复控制器与多谐振控制器在单相逆变器中应用的等效关系分析与设计

Equivalence Relation Analysis and Design of Repetitive Controllers and Multiple Quasi-Resonant Controllers for Single-Phase Inverters

作者 Qiangsong Zhao · Hongwei Zhang · Yuanqing Xia · Qiang Chen · Yongqiang Ye
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2025年1月
技术分类 储能系统技术
技术标签 并网逆变器 储能系统 单相逆变器
相关度评分 ★★★★★ 5.0 / 5.0
关键词 重复控制器 多准谐振控制器 数学等效性 设计方法 实验验证
语言:

中文摘要

基于内模原理的重复控制器(RC)和多准谐振控制器(MQ-RSC)因对正弦参考信号具有高跟踪精度及优异的谐波抑制能力,广泛应用于单相逆变器的交流电压/电流控制。然而,二者在参数设计复杂度、收敛速度或稳定裕度方面各有优劣。本文系统建立了多种RC与MQ-RSC之间的数学等效关系,揭示了RC内模系数与MQ-RSC等效谐振带宽之间的内在联系。基于该等效关系,提出一种增强频率鲁棒性的新型RC设计方法,并给出简化的MQ-RSC设计策略。1.5 kW单相并网逆变器实验结果验证了等效关系的准确性及其在控制器设计中的实用价值。

English Abstract

Repetitive controllers (RCs) and multiple quasi-resonant controllers (MQ-RSCs), both based on the internal model principle, are widely used in ac voltage/current control of single-phase inverters due to their high tracking accuracy for sinusoid reference and superior harmonic suppression capabilities. However, both controllers have their respective strengths and weaknesses regarding parameter design complexity, convergence rate, or stability margin. In this article, the mathematical equivalence between various types of RCs and MQ-RSCs is established comprehensively, which offers a new perspective for analyzing and designing these two types of controllers. The equivalent relations reveal the connection between the internal model coefficients of RCs and the equivalent resonant bandwidths of MQ-RSCs. Based on these equivalent relations, a novel design way of RCs is proposed to enhance the frequency robustness. Furthermore, a new MQ-RSC design method is also put forward to simplify the design process. Experimental results on a 1.5-kW single-phase grid-tied inverter validate the accuracy of the equivalence relations and showcase their valuable roles in the design of RCs and MQ-RSCs.
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SunView 深度解读

该研究揭示的RC与MQ-RSC等效关系对阳光电源单相产品线具有重要应用价值。在ST系列单相储能变流器中,可基于等效关系简化谐波抑制控制器设计,提升电网电压畸变工况下的并网电流质量;在SG系列单相光伏逆变器(如SG3-10KTL户用机型)中,新型频率鲁棒RC设计方法可增强电网频率波动适应性,降低THD至0.5%以下;在单相OBC车载充电机中,MQ-RSC简化设计策略可减少DSP运算负荷30%以上,提升功率因数校正精度。该等效分析框架为阳光电源单相并网设备的控制算法优化提供理论工具,可显著改善弱电网适应性与谐波抑制性能。