DocumentCode :
36806
Title :
Toward the Design of Control Algorithms for a Photovoltaic Equalizer: Choosing the Optimal Switching Strategy and the Duty Cycle
Author :
Villa, Luiz Fernando Lavado ; Pichon, Xavier ; Sarrafin-Ardelibi, Farshid ; Raison, Bertrand ; Crebier, J.C. ; Labonne, Antoine
Author_Institution :
G2ELab-Grenoble Electr. Eng. Lab., Univ. of Grenoble, St. Martin d´Hères, France
Volume :
29
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
1447
Lastpage :
1460
Abstract :
The photovoltaic equalizer is a promising response to the problems of partial shading in photovoltaic modules. Equipped with a network of transistors, this system can connect itself to the unshaded cells of the photovoltaic module, gather their excess current, and share it with the shaded cells. Thus, for a given shadow, the equalizer must always choose the transistors to activate and their associated duty cycle. This paper studies the impacts of these choices over power production in two parts. First, a quasi-exhaustive simulation is used to find the best transistors to activate for maximizing power production under a given shadow. Second, changes in the duty cycle are applied and its effects evaluated by analyzing the I-V curve of the associated PV module. All simulations are validated through measurements. The conclusions are summarized into “behavior laws” which can be used to develop algorithms for the equalizer control system.
Keywords :
equalisers; optimal control; phototransistors; photovoltaic power systems; solar cells; I-V curve; PV module; duty cycle; equalizer control system; optimal switching strategy; partial shading; photovoltaic cell; photovoltaic equalizer; power production; quasi-exhaustive simulation; transistor; Cascading style sheets; Equalizers; Photovoltaic systems; Production; Switches; Transistors; Embedded systems; PV mismatch; partial shading; photovoltaic plants; power electronics;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2013.2260177
Filename :
6508891
Link To Document :
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