Passivity-based adaptive current control loop of cascaded H-bridge multilevel converter for grid-tied photovoltaic system.

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Title: Passivity-based adaptive current control loop of cascaded H-bridge multilevel converter for grid-tied photovoltaic system.
Authors: Tran Hung Cuong1 cuongth@utc.edu.vn, An Thi Hoai Thu Anh2 htanh.ktd@utc.edu.vn
Source: International Journal of Electrical & Computer Engineering (2088-8708). Aug2024, Vol. 14 Issue 4, p3894-3904. 11p.
Subjects: Passivity-based control, Photovoltaic power systems, Energy dissipation, Adaptive control systems, Energy conversion
Abstract: This paper proposes an algorithm to passivity-based control (PBC) for the current control loop of the cascaded H-bridge converter (CHB) connecting the grid-connected PV system with the space vector modulation (SVM) algorithm using the law of expanding any number of voltage levels. The algorithm SVM in this paper is suitable for CHB converters. It can create a number of high levels of alternating voltage that other methods cannot do. Passivity-based control (PBC) algorithm aims to create a flexible controller that can change its structure or parameters to adapt to changes in the system, ensuring stable system quality, reducing switching losses and gaining energy conversion efficiency. It enhances the capability of accurately delivering power on demand to the grid with the CHB inverter in situations in which the grid demands the mobilization of maximum power from the photovoltaics (PV) system. The simulation results of the 9-level CHB system performed by MATLAB/Simulink software have proved the feasibility of the proposed algorithm. [ABSTRACT FROM AUTHOR]
Copyright of International Journal of Electrical & Computer Engineering (2088-8708) is the property of Institute of Advanced Engineering & Science and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
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  Data: Passivity-based adaptive current control loop of cascaded H-bridge multilevel converter for grid-tied photovoltaic system.
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  Data: <searchLink fieldCode="AR" term="%22Tran+Hung+Cuong%22">Tran Hung Cuong</searchLink><relatesTo>1</relatesTo><i> cuongth@utc.edu.vn</i><br /><searchLink fieldCode="AR" term="%22An+Thi+Hoai+Thu+Anh%22">An Thi Hoai Thu Anh</searchLink><relatesTo>2</relatesTo><i> htanh.ktd@utc.edu.vn</i>
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  Data: <searchLink fieldCode="JN" term="%22International+Journal+of+Electrical+%26+Computer+Engineering+%282088-8708%29%22">International Journal of Electrical & Computer Engineering (2088-8708)</searchLink>. Aug2024, Vol. 14 Issue 4, p3894-3904. 11p.
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  Data: <searchLink fieldCode="DE" term="%22Passivity-based+control%22">Passivity-based control</searchLink><br /><searchLink fieldCode="DE" term="%22Photovoltaic+power+systems%22">Photovoltaic power systems</searchLink><br /><searchLink fieldCode="DE" term="%22Energy+dissipation%22">Energy dissipation</searchLink><br /><searchLink fieldCode="DE" term="%22Adaptive+control+systems%22">Adaptive control systems</searchLink><br /><searchLink fieldCode="DE" term="%22Energy+conversion%22">Energy conversion</searchLink>
– Name: Abstract
  Label: Abstract
  Group: Ab
  Data: This paper proposes an algorithm to passivity-based control (PBC) for the current control loop of the cascaded H-bridge converter (CHB) connecting the grid-connected PV system with the space vector modulation (SVM) algorithm using the law of expanding any number of voltage levels. The algorithm SVM in this paper is suitable for CHB converters. It can create a number of high levels of alternating voltage that other methods cannot do. Passivity-based control (PBC) algorithm aims to create a flexible controller that can change its structure or parameters to adapt to changes in the system, ensuring stable system quality, reducing switching losses and gaining energy conversion efficiency. It enhances the capability of accurately delivering power on demand to the grid with the CHB inverter in situations in which the grid demands the mobilization of maximum power from the photovoltaics (PV) system. The simulation results of the 9-level CHB system performed by MATLAB/Simulink software have proved the feasibility of the proposed algorithm. [ABSTRACT FROM AUTHOR]
– Name: AbstractSuppliedCopyright
  Label:
  Group: Ab
  Data: <i>Copyright of International Journal of Electrical & Computer Engineering (2088-8708) is the property of Institute of Advanced Engineering & Science and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract.</i> (Copyright applies to all Abstracts.)
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RecordInfo BibRecord:
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      – Type: doi
        Value: 10.11591/ijece.v14i4.pp3894-3904
    Languages:
      – Code: eng
        Text: English
    PhysicalDescription:
      Pagination:
        PageCount: 11
        StartPage: 3894
    Subjects:
      – SubjectFull: Passivity-based control
        Type: general
      – SubjectFull: Photovoltaic power systems
        Type: general
      – SubjectFull: Energy dissipation
        Type: general
      – SubjectFull: Adaptive control systems
        Type: general
      – SubjectFull: Energy conversion
        Type: general
    Titles:
      – TitleFull: Passivity-based adaptive current control loop of cascaded H-bridge multilevel converter for grid-tied photovoltaic system.
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            NameFull: Tran Hung Cuong
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            NameFull: An Thi Hoai Thu Anh
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            – D: 01
              M: 08
              Text: Aug2024
              Type: published
              Y: 2024
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              Value: 14
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            – TitleFull: International Journal of Electrical & Computer Engineering (2088-8708)
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