DocumentCode :
180076
Title :
DC bus stabilization of Li-Ion battery based energy storage for hydrogen/solar power plant for autonomous network applications
Author :
Thounthong, P. ; Sikkabut, S. ; Mungporn, P. ; Piegari, L. ; Nahid-Mobarakeh, B. ; Pierfederici, S. ; Davat, B.
Author_Institution :
Dept. of Teacher Training in Electr. Eng., King Mongkut´s Univ. of Technol. North Bangkok, Bangkok, Thailand
fYear :
2014
fDate :
5-9 Oct. 2014
Firstpage :
1
Lastpage :
8
Abstract :
This study presents innovative control algorithms for a hybrid energy system by a photovoltaic (PV) array and a polymer electrolyte membrane fuel cell (PEMFC). A single storage device, i.e., a Li-Ion battery module, is in the proposed structure. Linear proportional-integral (PI) and nonlinear flatness-based controllers for dc bus stabilization for power plants are compared. To verify the control algorithms, a hardware system is realized with analog circuits for the PV, FC and battery current control loops (inner controller loops), and with numerical calculation (dSPACE) for the external energy control loops. Experimental results with small-scale devices, namely, a photovoltaic array (800 W, 31 A) manufactured by the Ekarat Solar Company, a PEMFC (1200 W, 46 A) manufactured by the Ballard Power System Company, and a Li-Ion battery module (11.6 Ah, 24 V) manufactured by the SAFT Company, illustrate the excellent energy-management scheme during load cycles, and the nonlinear differential flatness-based control provides improved dc bus regulation relative to a classical linear PI control method.
Keywords :
PI control; battery storage plants; fuel cell power plants; power generation control; proton exchange membrane fuel cells; secondary cells; solar power stations; Ballard Power System Company; DC bus stabilization; Ekarat Solar Company; PEMFC; PV array; SAFT Company; analog circuits; autonomous network application; battery current control loop; classical linear PI control method; current 31 A; current 46 A; dSPACE; energy-management scheme; external energy control loops; hardware system; hybrid energy system; hydrogen-solar power plant; improved DC bus regulation; inner controller loops; innovative control algorithm; linear PI controller; linear proportional-integral controller; lithium-ion battery-based energy storage; load cycles; nonlinear differential flatness-based control; nonlinear flatness-based controller; numerical calculation; photovoltaic array; polymer electrolyte membrane fuel cell; power 1200 W; power 800 W; single-storage device; small-scale devices; voltage 24 V; Batteries; Hybrid power systems; Hydrogen; Pi control; Power generation; System-on-chip; Flatness control; Li-Ion battery; fuel cells; nonlinear system; photovoltaic;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industry Applications Society Annual Meeting, 2014 IEEE
Conference_Location :
Vancouver, BC
Type :
conf
DOI :
10.1109/IAS.2014.6978368
Filename :
6978368
Link To Document :
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