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首页> 外文期刊>Industry Applications, IEEE Transactions on >A Virtual-Impedance Droop Control for Accurate Active Power Control and Reactive Power Sharing Using Capacitive-Coupling Inverters
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A Virtual-Impedance Droop Control for Accurate Active Power Control and Reactive Power Sharing Using Capacitive-Coupling Inverters

机译:一种虚拟阻抗下垂控制,用于使用电容耦合逆变器精确有功功率控制和无功功率共享

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摘要

Capacitive-coupling inverters (CCIs) have low operation voltage and enhanced reactive power control capability. It is a promising alternative to provide reactive power and voltage regulation in microgrids (MGs). Droop control is one of the most widely used primary controllers under a hierarchical framework in an MG. However, conventional droop control performance needs improvement since the droop curve assumption is not valid in part of CCI's operational area. At the same time, reactive power sharing error due to the uncertainty factor of feeder impedance needs to be minimized. In this article, virtual-impedance droop control is proposed for CCIs to solve the two issues. A virtual impedance selection method is developed with consideration of CCI's second-order LC coupling branch. First, the virtual impedance is selected for reducing the coupling between the active and reactive power of CCIs. The stability and sensitivity of the system are also evaluated based on a small-signal model to provide guidelines for virtual impedance selection. The proposed control varies the equivalent impedance via a feedback loop in CCI's control for accurate power control and sharing in MGs under mismatched feeder impedance. The validity of the proposed virtual-impedance droop control is verified through simulation and experimental results.
机译:电容耦合逆变器(CCIS)具有较低的操作电压和增强的无功功率控制能力。这是一个有前途的替代方案,可以在微电网(MGS)中提供无功和电压调节。下垂控制是MG中的分层框架下最广泛使用的主要控制器之一。但是,由于Droop曲线假设在CCI的操作区域的一部分中无效,因此传统的下垂控制性能需要改进。同时,需要最小化由于进料器阻抗的不确定性因子而导致的无功分配误差。在本文中,建议为CCIS提出虚拟阻抗下垂控制,以解决两个问题。通过考虑CCI的二阶LC耦合分支开发了虚拟阻抗选择方法。首先,选择虚拟阻抗以减少CCIS的主动和无功功率之间的耦合。还基于小信号模型评估系统的稳定性和灵敏度,以提供虚拟阻抗选择的指导。所提出的控制通过CCI控制中的反馈回路等同于等效阻抗在不匹配的馈线阻抗下的准确功率控制和在MGS中共享。通过仿真和实验结果验证了所提出的虚拟阻抗下垂控制的有效性。

著录项

  • 来源
    《Industry Applications, IEEE Transactions on》 |2020年第6期|6722-6733|共12页
  • 作者单位

    State Key Laboratory of Internet of Things for Smart City and Department of Electrical and Computer Engineering University of Macau Macao Macao;

    State Key Laboratory of Internet of Things for Smart City and Department of Electrical and Computer Engineering University of Macau Macao;

    State Key Laboratory of Internet of Things for Smart City and Department of Electrical and Computer Engineering University of Macau Macao Macao;

    Department of Energy Technology Aalborg University Aalborg Ø Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Impedance; Reactive power; Couplings; Power control; Inverters; Voltage control; Microgrids;

    机译:阻抗;无功功率;联轴器;电源控制;逆变器;电压控制;微普林;

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