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Improving ADRC Strategy for DC-Link Voltage Regulation in PV Grid-Tied Four-Leg Inverters Using an Adaptive Nonlinear High-Gain Observer

Author

Listed:
  • Mourad Zebboudj

    (Laboratory of Industrial and Information Technology, Faculty of Technology, University of Bejaia, Bejaia 06000, Algeria)

  • Toufik Rekioua

    (Laboratory of Industrial and Information Technology, Faculty of Technology, University of Bejaia, Bejaia 06000, Algeria)

  • Ali Chebabhi

    (Electrical Engineering Laboratory, Faculty of Technology, University of M’sila, M’sila 28000, Algeria)

  • Seddik Bacha

    (Espace-Dev, Université de Guyane, 97300 Cayenne, France)

  • Syphax Ihammouchen

    (Laboratory of Industrial and Information Technology, Faculty of Technology, University of Bejaia, Bejaia 06000, Algeria)

  • Idris Sadli

    (Espace-Dev, Université de Guyane, 97300 Cayenne, France)

  • Djamila Rekioua

    (Laboratory of Industrial and Information Technology, Faculty of Technology, University of Bejaia, Bejaia 06000, Algeria)

  • David Frey

    (G2Elab, Grenoble INP, Université de Grenoble Alpes, CNRS, 38000 Grenoble, France)

Abstract

In practical photovoltaic grid-tied four-leg inverter systems (PV-GTFLIs), changes in radiation, temperature, and grid voltage magnitude cause significant disturbances, including DC-link voltage disturbance and power unbalance, which can impact the system’s dynamic responses, control performance, grid power quality, efficiency, and reliability. To deal with these problems, this article proposes an improved active disturbance rejection control (ADRC) methodology for optimizing DC-link voltage regulation in PV-GTFLIs. The proposed ADRC approach incorporates a nonlinear high-gain observer (NHGO) within the external DC-link voltage control loop to estimate and mitigate disturbances. The suggested ADRC approach adopts the NHGO instead of the traditional extended state observer due to its superior characteristics, which include excellent dynamic responses, rapid and accurate disturbance estimation and rejection, and enhanced resilience against measurement noise. Thus, it enhances the stability of the DC bus voltage, enhances the system’s dynamic responses, improves its steady-state performance, increases its ability to reject voltage disturbances, and improves the reliability of the PV-GTFLI, as well as reducing the cost and size. The effectiveness of the proposed ADRC approach based on the NHGO is confirmed through software-in-the-loop real-time validation tests, including changes in irradiation and PV cell temperature, sag in grid voltage amplitude, and internal uncertainties, using the OPAL real-time digital simulator.

Suggested Citation

  • Mourad Zebboudj & Toufik Rekioua & Ali Chebabhi & Seddik Bacha & Syphax Ihammouchen & Idris Sadli & Djamila Rekioua & David Frey, 2026. "Improving ADRC Strategy for DC-Link Voltage Regulation in PV Grid-Tied Four-Leg Inverters Using an Adaptive Nonlinear High-Gain Observer," Energies, MDPI, vol. 19(15), pages 1-36, August.
  • Handle: RePEc:gam:jeners:v:19:y:2026:i:15:p:3679-:d:2008684
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