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A current sensorless control method for multi‐level active front‐end rectifiers with LCL filter

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submitted on 2024-08-18, 11:48 and posted on 2024-08-18, 11:50 authored by Sertac Bayhan, Hasan Komurcugil

This paper presents a current sensorless control strategy for a three‐phase multi‐level active front‐end rectifier with an LCL filter. The proposed control strategy is based on the mathematical model of the system. Opposed to the existing control methods that measure three‐phase currents as well as three‐phase voltages, the proposed control eliminates the current measurement requirement which leads to cost reduction. Moreover, unlike the existing current control methods that use two proportional‐integral (PI) controllers, the proposed current control does not use any PI controller in the current loop. The elimination of two PI controllers simplifies the controller design. The resonance damping requirement arising due to the LCL filter is tackled by active damping that is realized by using filter capacitor voltage feedback. The steady‐state and dynamic performances of the proposed control strategy are investigated experimentally under balanced, unbalanced and distorted grid conditions.

Other Information

Published in: IET Power Electronics
License: http://creativecommons.org/licenses/by-nc/4.0/
See article on publisher's website: https://dx.doi.org/10.1049/pel2.12416

Funding

Open Access funding provided by the Qatar National Library.

Qatar National Research Fund (NPRP12S-0214-190083), Electric Vehicle Charging Infrastructure in Qatar: Charger Design, Grid Integration, and Cost Quantification.

History

Language

  • English

Publisher

Institution of Engineering and Technology

Publication Year

  • 2022

License statement

This Item is licensed under the Creative Commons Attribution-NonCommercial 4.0 International License

Institution affiliated with

  • Hamad Bin Khalifa University
  • Qatar Environment and Energy Research Institute - HBKU

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