DocumentCode :
1617661
Title :
Electric and thermal characterization of advanced hybrid Li-Ion capacitor rechargeable energy storage system
Author :
Omar, Normaliza ; Al Sakka, Monzer ; Van Mierlo, J. ; Van den Bossche, P. ; Gualous, H.
Author_Institution :
Vrije Univ. Brussel, Brussels, Belgium
fYear :
2013
Firstpage :
1574
Lastpage :
1580
Abstract :
The Lithium-Ion Capacitor (LIC) is a new hybrid energy storage device. Its structure combines the electrical double-layer capacitor (EDLCs) and lithium-ion technology. Its elementary structure is composed of a positive electrode with activated carbon as in double-layer capacitor and a negative electrode based on Li doped carbon similar to the Li-Ion battery. The advantage of the LIC technology compared to the conventional storage device lies in the fact that the power density and the nominal voltage are higher and the energy density is much higher than EDLCs. This paper deals with the electrical and thermal characterization of this new energy storage device. The LIC equivalent series resistance and capacitance are determined based on extended electrical characterization tests. The LIC parameters variations according to the frequency and to the temperature are presented. Finally, the LIC temperature parameters and distribution over the surface area as a function of time is presented and analyzed.
Keywords :
activated carbon; capacitors; electrodes; lithium compounds; secondary cells; temperature distribution; LIC equivalent series capacitance; LIC equivalent series resistance; LIC technology; LIC temperature distribution; LIC temperature parameters; Li; activated carbon; advanced hybrid lithium-ion capacitor rechargeable energy storage system; double-layer capacitor; electric characterization; electrical double-layer capacitor; energy density; hybrid energy storage device; lithium ion battery; lithium-ion technology; negative electrode; positive electrode; surface area; thermal characterization; time function; Batteries; Capacitance; Capacitors; Carbon; Discharges (electric); Electrodes; Resistance; Hybrid energy storage device; Lithium Ion Capacitor; electric characterization; thermal characterization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering, Energy and Electrical Drives (POWERENG), 2013 Fourth International Conference on
Conference_Location :
Istanbul
ISSN :
2155-5516
Type :
conf
DOI :
10.1109/PowerEng.2013.6635851
Filename :
6635851
Link To Document :
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