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Evaluation of the Main MPPT Techniques for Photovoltaic Applications

IEEE Transactions on Industrial Electronics · 2012 · Vol. 60(3) · pp. 1156–1167
Moacyr Aureliano Gomes de BritoLuigi GalottoLeonardo P. SampaioGuilherme de A. e MeloCarlos A. Canesin

Abstract

This paper presents evaluations among the most usual maximum power point tracking (MPPT) techniques, doing meaningful comparisons with respect to the amount of energy extracted from the photovoltaic (PV) panel [tracking factor (TF)] in relation to the available power, PV voltage ripple, dynamic response, and use of sensors. Using MatLab/Simulink and dSPACE platforms, a digitally controlled boost dc-dc converter was implemented and connected to an Agilent Solar Array E4350B simulator in order to verify the analytical procedures. The main experimental results are presented for conventional MPPT algorithms and improved MPPT algorithms named IC based on proportional-integral (PI) and perturb and observe based on PI. Moreover, the dynamic response and the TF are also evaluated using a user-friendly interface, which is capable of online program power profiles and computes the TF. Finally, a typical daily insulation is used in order to verify the experimental results for the main PV MPPT methods.

Photovoltaic System Optimization Techniquessolar cell performance optimizationSolar Thermal and Photovoltaic SystemsMaximum power point trackingPhotovoltaic systemMATLABMaximum power principleElectronic engineeringComputer sciencePower (physics)Control theory (sociology)EngineeringVoltage
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References
A Review of Single-Phase Grid-Connected Inverters for Photovoltaic Modules
IEEE Transactions on Industry Applications · 2005 · 3,575 citations
Optimization of Perturb and Observe Maximum Power Point Tracking Method
IEEE Transactions on Power Electronics · 2005 · 2,904 citations
High-Performance Adaptive Perturb and Observe MPPT Technique for Photovoltaic-Based Microgrids
IEEE Transactions on Power Electronics · 2011 · 864 citations
A Variable Step Size INC MPPT Method for PV Systems
IEEE Transactions on Industrial Electronics · 2008 · 1,292 citations
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