Adaptive proportional integral controller based on ann for dc link voltage control single-phase inverter connected to grid

http://dx.doi.org/10.46411/jpsoaphys.2020.02.22

Section  de la parution:  Informations de publication

 

J. P. Soaphys, Vol 2, N°2 (2020) C20A22; 31 Mars 2021

Pages :  C20A22-1  à C20A22-6

DOI du journal   : https://doi.org/10.46411/jpsoaphys.journal
DOI du Numéro : https://doi.org/10.46411/jpsoaphys.journal.v2.2
DOI de l’article  : http://dx.doi.org/10.46411/jpsoaphys.2020.02.22
Print ISSN: 2630-0958
Historique de la version : actuelle

Informations sur les auteurs

Traore Mamadou, Ndiaye Alphousseyni, Ba Amadou, and Mbodji Senghane

1 Research Team Energetic System and Efficiency, Alioune Diop University of Bambey, Bambey, Senegal,
2 Research Team Renewable Energies Materials and Laser, Alioune Diop University of Bambey, Bambey, Senegal,
senghane.mbodji@uadb.edu.sn 

Corresponding author e-mail:mamadoutraore1uadb@gmail.com

 

A B S T R A C T

The output power of the inverter of a PV system is directly affected by the DC-link voltage. Hence an adaptive Proportional Integral controller based on Artificial Neural Networks is developed in this paper. MATLAB/Simulink is used for the simulation of the studied system in order to evaluate the performance of the proposed methods. Simulation
results show that the proposed API-ANN is faster to track the DC-link voltage than the conventional method. The injected harmonics to the grid were significantly reduced with API-ANN (0.08 % of total harmonic distortion) in comparison with the classic PI with 4.23 %. The API-ANN gives a good performance than the classic PI.

Keywords : PI-ANN Contoller, PV, Inveter, Grid.

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