DocumentCode :
648191
Title :
Modeling and experimental validation of a DSP controlled photovoltaic power system with battery energy storage
Author :
Muoka, Polycarp I. ; Haque, Md Enamul ; Gargoom, Ameen ; Negnevitsky, Michael
Author_Institution :
Sch. of Eng., Univ. of Tasmania, Hobart, TAS, Australia
fYear :
2013
fDate :
21-25 July 2013
Firstpage :
1
Lastpage :
5
Abstract :
For photovoltaic (PV) energy system integration to the power grid, knowledge of its operating characteristics is invaluable to power engineers. Such knowledge can effectively be achieved via system modeling, simulation and experimental studies. This paper develops models for an integrated PV power system which comprises PV array, SEPIC (single ended primary inductance converter) converter, bidirectional dc-dc converter, dc-ac converter, and battery energy storage using Matlab/Simulink. The models are used for simulation studies to investigate: 1) the response of the system to the ever-changing environmental variables, 2) the ability to track the maximum power point, 3) the role of the battery energy storage in the mitigation of voltage and power oscillations, and 4) the role of the inverter in ensuring compliance to the grid requirements. To validate the simulation results, the converters and sensor boards are built and a DSP (digital signal processor) controller is used to implement the control functions.
Keywords :
DC-AC power convertors; invertors; maximum power point trackers; microcontrollers; photovoltaic power systems; power generation control; power grids; secondary cells; DC-AC converter; DSP controlled photovoltaic power system; Matlab-Simulink; PV array; SEPIC; battery energy storage; bidirectional DC-DC converter; digital signal processor controller; integrated PV power system; inverter; maximum power point tracking; power grid; power oscillations; single ended primary inductance converter; system modeling; voltage oscillations; Arrays; Batteries; Inverters; Load modeling; Mathematical model; Voltage control; Bidirectional converter; dc-dc power converter; inverter; maximum power point tracking (MPPT); modeling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Society General Meeting (PES), 2013 IEEE
Conference_Location :
Vancouver, BC
ISSN :
1944-9925
Type :
conf
DOI :
10.1109/PESMG.2013.6672761
Filename :
6672761
Link To Document :
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