DocumentCode :
3586052
Title :
Simulation and analysis of an intelligent fuzzy logic controller model for low power photovoltaic energy utilization system
Author :
Deepti, Kakarla ; Srihari, P. ; Achari, Manjunadh
Author_Institution :
Dept. of ECE, Vasavi Coll. of Eng., Hyderabad, India
fYear :
2014
Firstpage :
206
Lastpage :
209
Abstract :
Remote areas in India are still not connected to the power grid. But they have mobile network connectivity. The people face problems in charging their cell phones. They are forced to travel a long distances to get access to electrical outlets. The use of new efficient photovoltaic solar cells (PVSCs) has emerged as an alternative measure of renewable green power, energy conservation and demand-side management. The manufacturing of solar cells and photovoltaic arrays has advanced dramatically in recent years. But they have two inherent major problems the first is low conversion efficiency (10to16%for commercially available amorphous silicon solar cells), second is high capital cost [1]. Solar powered systems consist of different parts to be controlled separately. Since the generated power is a function of uncontrollable environmental conditions, it requires extra caution to design controllers that handle unpredictable events and maintain efficient load matching power. In this study, a photovoltaic (PV) solar array model was developed and analyzed using Matlab/Simulink. The model includes converter circuits, a controller using fuzzy logic control (FLC), and a maximum Power point (MPP) tracking control which is used to operate the PVA at its maximum power. The MPP point is tracked using four algorithms perturbation & Observation, Incremental conductance method, Constant Voltage method and Constant current method. Later a comparative performance analysis of the model for MPP algorithms is done.
Keywords :
control system synthesis; demand side management; elemental semiconductors; fuzzy control; intelligent control; maximum power point trackers; perturbation techniques; power grids; solar cell arrays; FLC; MPP algorithms; MPP tracking control; Matlab/Simulink; PV solar array model; amorphous silicon solar cells; constant current method; constant voltage method; converter circuits; demand-side management; design controllers; energy conservation; fuzzy logic control; incremental conductance method; intelligent fuzzy logic controller model; load matching power; low power photovoltaic energy utilization system; maximum power point; perturbation & observation; photovoltaic solar array model; photovoltaic solar cells; power grid; renewable green power; solar cells manufacturing; solar powered systems; uncontrollable environmental conditions; Algorithm design and analysis; Analytical models; Batteries; Integrated circuit modeling; Mathematical model; Photovoltaic systems; Buck and Boost Converters; Fuzzy controller; Maximum Power Point tracking; Photovoltaic module;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics,Communication and Computational Engineering (ICECCE), 2014 International Conference on
Type :
conf
DOI :
10.1109/ICECCE.2014.7086659
Filename :
7086659
Link To Document :
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