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ENP Engineering Science Journal · Vol. 5 · No. 2 · pp. 52-57 · 2025

Advanced Control of Shunt Active Power Filter based on Flying Capacitor Multicellular Inverter using Backstepping and PS-PWM

kheira Hemici1, Mohand Oulhadj Mahmoudi

ELTMechanics, thermal & fluidsControl, robotics & automation

Abstract

This paper presents an advanced nonlinear control strategy for a Shunt Active Power Filter (SAPF) utilizing a Flying Capacitor Multicellular Inverter (FCMLI) to improve power quality in electrical distribution systems. The proposed control is based on the Backstepping technique, known for its ability to handle nonlinear system dynamics and guarantee global stability. To ensure efficient inverter operation and capacitor voltage balancing, Phase-Shifted Pulse Width Modulation (PS-PWM) is employed. The effectiveness of the proposed Backstepping controller is evaluated against a traditional Proportional-Integral (PI) controller. Simulation results demonstrate that the proposed method outperforms the conventional PI controller in terms of total harmonic distortion (THD), transient response, and capacitor voltage balance.

Keywords

Shunt active power filterflying capacitor multicellular inverterbackstepping controlharmonic mitigation

Authors

  1. 1Laboratory of Control Process, Ecole Nationale Polytechnique (ENP), B.P. 182 El Harrach, Algiers 16200, Algeria.

Cite this article

kheira Hemici, Mohand Oulhadj Mahmoudi (2025) Advanced Control of Shunt Active Power Filter based on Flying Capacitor Multicellular Inverter using Backstepping and PS-PWM. ENP Engineering Science Journal 5(2) pp. 52-57 https://doi.org/10.53907/enpesj.v5i2.338

Licence : creativecommons.org/licenses/by-nc-sa/4.0