Title :
Performances of PV system connected to the grid with MPPT controlled by fuzzy control
Author :
Hadjammar, S. ; Bouchafaa, F.
Author_Institution :
Lab. of Instrum., Univ. of Sci. & Technol. Houari Boumediene, Bab-Ezzouar Algiers, Algeria
Abstract :
This paper presents the performances of model of the electric part of a grid connected photovoltaic system. The model contains a detailed representation of the main components of the system that are the solar array, and the grid side inverter multilevel inverter NPC VSI. In order to extract the maximum amount of from the photovoltaic generator, we propose an intelligent control method for the maximum power point tracking (MPPT) of a photovoltaic system under variable temperature and insulation conditions. This method uses a fuzzy logic controller. As part of our work, we will focus on voltage inverter at three levels to NPC structure. The latter can increase the voltage supplied to the load (network) through their topology. Thus, they can generate more voltage sinusoidal possible and improve the total harmonic distortion through the high voltage levels provided by the structure of this new converter. The grid interface inverter transfers the energy drawn from the PV module into the grid by keeping common dc voltage constant. The P-Q control approach has been presented for the multilevel inverter. The simulation results under Matlab/Simulink show the control performance and dynamic behaviour of grid connected photovoltaic system.
Keywords :
fuzzy control; intelligent control; invertors; maximum power point trackers; photovoltaic power systems; power generation control; power grids; solar cell arrays; MPPT; Matlab-Simulink; NPC structure; P-Q control approach; PV module; PV system performances; dc voltage constant; fuzzy control; fuzzy logic controller; grid connected photovoltaic system; grid interface inverter; grid side inverter multilevel inverter NPC VSI; insulation conditions; intelligent control method; maximum power point tracking; photovoltaic generator; power grids; solar array; total harmonic distortion; Artificial intelligence; DH-HEMTs; MPPT; NPC inverter; PV; clamping bridge; enslavement; fuzzy logic control; gird;
Conference_Titel :
Smart Energy Grid Engineering (SEGE), 2013 IEEE International Conference on
Conference_Location :
Oshawa, ON
Print_ISBN :
978-1-4799-2774-6
DOI :
10.1109/SEGE.2013.6707922