Published April 2019 | Version v1
Journal article

Finite-Set Model Predictive Control of an Asymmetric Cascaded H-bridge photovoltaic inverter

  • 1. Laboratory of Instrumentation, Faculty of Electronics and Computer Engineering, University of Sciences and Technology Houari Boumediene, BP 32 El-Alia, 16111 Bab-Ezzouar Algiers (Algeria)
  • 2. ESI - Ecole Nationale Supérieure en Informatique, BP 68M - Oued Smar 16270 Algiers (Algeria)
  • 3. Laboratory of Process Control, Polytechnics National School, University of Algiers, Algiers, 10, Hassen Badi Road, El Harrach, BP 182, Algiers (Algeria)

Description

This paper presents a Finite-Set Model Predictive Control (FS-MPC) method adapted for an Asymmetric and Cascaded H-bridge Photovoltaic inverter (ACHB). This advanced control approach is designed to: Ensure an independent Maximum Power Point Tracking (MPPT), Synthesize at the inverter output a sinusoidal multistep PWM waveform, and provide an output current with unity power factor and low harmonic distortion. ACHB seems to be a perfect candidate for Photovoltaic systems. However, the control of such kind of converters is quite a challenging task. On the other hand, FS-MPC has achieved great popularity due to the ease with which the constraints, nonlinearities, and switching actions can be included in the controller formulation. Classical approach to tune the FS-MPC parameters is not fruitful for an ACHB. In this concern, we propose, new and dynamic, parameters for the FS-MPC algorithm. This approach is evaluated under different operating conditions including robustness tests. Results provide that the proposed FS-MPC method features a great flexibility and control potential.

Additional details

Identifiers

DOI
10.1016/j.apsusc.2018.04.166;
PII
S0169433218311371;

Publishing Information

Journal Title
Applied Surface Science
Journal Volume
474
Journal Page Range
p. 102-110
ISSN
0169-4332
CODEN
ASUSEE

Optional Information

Copyright
Copyright (c) 2018 Elsevier B.V. All rights reserved.