杨之青  (副教授)

硕士生导师

电子邮箱:

入职时间:2022-01-03

所在单位:电气工程系

职务:学院外事秘书

学历:研究生(博士)毕业

办公地点:逸夫楼603

性别:男

联系方式:zhiqing.yang@hfut.edu.cn

学位:博士学位

在职信息:在职

毕业院校:德国亚琛工业大学

学科:电力电子与电力传动

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Virtual Damping Control Design of Three-Phase Grid-Tied PV Inverters for Passivity Enhancement

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影响因子:5.967

DOI码:10.1109/TPEL.2020.3035417

发表刊物:IEEE Transactions on Power Electronics

刊物所在地:United States

关键字:Control design, grid-tied converter, passivity, resonances, stability

摘要:The interconnection stability of a grid-tied inverter system can be investigated not only based on classical control theory, e.g., Nyquist criterion, but also from the energy dissipation point of view. If a critical resonance occurs within the regions, where the system equivalent impedance behaves passively, i.e., has only nonnegative real parts, the system stability can be guaranteed. Thus, it is preferred to design systems with passive regions over a wide-frequency range. This article investigates passivity properties influenced by different control loops and operating points in the dq frame, which facilitates the stability assessment in the frequency domain. Based on this, a virtual damping control method is proposed to improve the stability by enhancing the system passivity. By implementing a damping transfer function in the d - and q -axis individually, nonpassive regions can be accordingly reduced over a specific frequency range. Asymmetrical designs can be considered in the d - and q -axis according to corresponding passivity properties, which is impossible to be realized through symmetric physical filter components. The design procedure is elaborated based on a 2 MW inverter system, which is based on a combined graphical and analytical approach. Verifications are conducted based on a 1 kW prototype including both simulations and experimental results. The method applies to all types of grid-tied inverters with multiple control loops. This article is accompanied by a video demonstrating the validations.

论文类型:期刊论文

学科门类:工学

文献类型:J

卷号:36

期号:6

页面范围:6251-6264

ISSN号:0885-8993

是否译文:

发表时间:2020-11-03

收录刊物:SCI

发布期刊链接:https://ieeexplore.ieee.org/xpl/RecentIssue.jsp?punumber=63

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