基于虚阻抗的单相逆变器并联控制策略

Shungang Xu, Jianping Xu
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引用次数: 12

摘要

在传统的单相逆变器并联系统中,由于逆变器输出等效阻抗的线路阻抗和频率特性不一致,导致负载谐波功率不能被逆变器很好地分配到系统中。通过分析单相逆变器的等效阻抗,提出了双闭环反馈控制逆变器的虚拟阻抗设计方法。这种方法可以提高逆变器阻抗的频响性能,在大范围内等效输出阻抗表现为纯电阻。因此,采用这种控制方法的逆变并联系统可以对称地分担谐波功率,从而获得更好的负载分担性能。建立了基于控制方法的并联系统模型,搭建了实验平台。实验结果表明了该方法的有效性和工程实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parallel control strategy of single-phase inverter based on virtual impedance
In the conventional single-phase inverter parallel system, because of the inconsistent line impedance and frequency characteristic of the inverter output equivalent impedance, the load harmonic power can not be well-distributed by the inverters in the system. By analyzing the equivalent impedance of the single-phase inverter, this paper proposed a virtual impedance design method in the dual close loop feedback control inverter. This method can improve the frequency response performance of the inverter impedance and the equivalent output impedance appears as pure resistance on a large scale. Therefore, the inverter parallel system adopted this control method can share the harmonic power symmetrically, and lead to better load-sharing performance. The parallel system model based on the control method is built, and the experiment platform is constructed. Finally, experimental results show the effectiveness and the engineering practicability of the method.
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