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ISSN Approved Journal || eISSN: 2582-8185 || CODEN: IJSRO2 || Impact Factor 8.2 || Google Scholar and CrossRef Indexed

Peer Reviewed and Referred Journal || Free Certificate of Publication

Research and review articles are invited for publication in September 2026 (Volume 20, Issue 3) Submit manuscript

Robust dual-loop sliding mode control for MPPT and grid-interfacing inverter regulation in a hybrid PV-battery system

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  • Robust dual-loop sliding mode control for MPPT and grid-interfacing inverter regulation in a hybrid PV-battery system

Muhammed F. Alwaeli *

Department of Electrical Engineering, Faculty of Engineering, University of Kufa, Najaf, Iraq.

Research Article

International Journal of Science and Research Archive, 2026, 16(01), 916–929

Article DOI: 10.30574/ijsra.2026.20.1.1526

DOI url: https://doi.org/10.30574/ijsra.2026.20.1.1526

Received on 13 June 2026; revised on 25 July 2026; accepted on 27 July 2026

Photovoltaic systems interfaced through a boost converter and a grid-tied inverter form a nonlinear, time-varying cascade that conventional PID control struggles to regulate across changing irradiance and load conditions. This paper presents a dual-loop sliding mode control (SMC) architecture for a hybrid PV-battery system: an SMC-MPPT loop regulating the boost converter’s DC bus voltage, and an SMC current loop regulating a grid-tied inverter under Unipolar PWM. Both loops are derived from a unified methodology - sliding surface design, exponential reaching law, boundary-layer control law, and Lyapunov stability proof - applied within a single state-space model spanning the PV array, boost converter, battery, and inverter. Simulation results show the converter settling within 2.35 s of an irradiance transient with sub-3% ripple, and the inverter maintaining unity power factor across a variable 24-step load profile. Over the wide range of irradiance tested, the SMC-MPPT scheme can supply an average of 98% higher power than a stand-alone configuration. The output of the two loops works independently, and it is not affected by each other via the common DC bus, according to the separation of time-scales principle embodied in our system model. The primary future validation direction is established as a controlled comparison against a PID/P&O baseline under identical disturbance profiles.

Sliding Mode Control (SMC); Lyapunov Approach; DC-DC Boost Converter; Photovoltaic System.

https://ijsra.net/sites/default/files/fulltext_pdf/IJSRA-2026-1526.pdf

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Muhammed F. Alwaeli. Robust dual-loop sliding mode control for MPPT and grid-interfacing inverter regulation in a hybrid PV-battery system. International Journal of Science and Research Archive, 2026, 16(01), 916–929. Article DOI: https://doi.org/10.30574/ijsra.2026.20.1.1526.

Copyright © Author(s). All rights reserved. This article is published under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution, and reproduction in any medium or format, as long as appropriate credit is given to the original author(s) and source, a link to the license is provided, and any changes made are indicated.


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