DocumentCode :
256211
Title :
A new variable step size INC MPPT method for PV systems
Author :
Abdourraziq, Mohamed Amine ; Maaroufi, Mohamed ; Ouassaid, Mohammed
Author_Institution :
Dept. of Electr. Eng., Mohammed V Agdal Univ., Rabat, Morocco
fYear :
2014
fDate :
14-16 April 2014
Firstpage :
1563
Lastpage :
1568
Abstract :
Maximum power points tracking (MPPT) techniques are widely utilized in photovoltaic (PV) systems to operate at the peak power of PV array which depends on solar and ambient temperature. Between all the MPPT strategies, the incremental conductance (INC) algorithm is extensively employed due to the high tracking accuracy at steady state and good adaptability to the rapidly changing atmospheric conditions. In this paper, a novel variable step-size incremental conductance MPPT algorithm is used in solar array power systems with direct control method, which automatically adjusts the step size to track MPP without the proportional-integral control loop. Compared with conventional INC and variable step-size INC method, the proposed method can largely improve the MPPT response speed and accuracy at steady state simultaneously without steady-state oscillation. The proposed algorithm was tested in MATLAB/SIMULINK environment. Results show the feasibility, a faster response speed and higher tracking accuracy in changing irradiance.
Keywords :
maximum power point trackers; photovoltaic power systems; MPPT accuracy; MPPT response speed; Matlab; PV array; PV systems; Simulink; direct control method; incremental conductance algorithm; maximum power point tracking; photovoltaic systems; proportional-integral control loop; solar array power systems; variable step size INC MPPT method; Accuracy; Arrays; Educational institutions; Integrated circuits; MATLAB; Incremental Conductance (INC); maximum power points tracking (MPPT); photovoltaic (PV) power systems; variable step size;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Multimedia Computing and Systems (ICMCS), 2014 International Conference on
Conference_Location :
Marrakech
Print_ISBN :
978-1-4799-3823-0
Type :
conf
DOI :
10.1109/ICMCS.2014.6911212
Filename :
6911212
Link To Document :
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