Title :
Compact thermal modeling of Electric Double-Layer-Capacitors
Author :
Guillemet, Ph ; Pascot, C. ; Scudeller, Y.
Author_Institution :
Ecole Polytech., Univ. de Nantes, Nantes
Abstract :
Self-heating of electric double-layer-capacitors during charge and discharge current cycles has a strong influence on performance, reliability and safety. This paper presents a compact thermal modelling of electric double-layer-capacitors suitable for determining static and dynamic temperature under cycling, at any point of the active components, as a function of topology, materials properties, and operating conditions. Thermal circuits have been created by combining different branches of multi-ports matrix elements referring to each direction of heat transport. Circuits were developed by considering a uniform volume heat generation and, for each branch, a one-directional thermal transport. Performance of the modelling has been investigated in terms of accuracy and computational cost. Compact models were found in good agreement with simulations by the finite-elements method. Deviation did not exceed 8 %.
Keywords :
capacitors; finite element analysis; thermal analysis; compact thermal modeling; discharge current cycles; electric double-layer-capacitors; finite-elements method; heat transport; multiports matrix element; one-directional thermal transport; self-heating; uniform volume heat generation; Capacitors; Circuits; Computational efficiency; Electrical safety; Electrodes; Finite element methods; Material properties; Packaging; Temperature; Voltage;
Conference_Titel :
Thermal Inveatigation of ICs and Systems, 2008. THERMINIC 2008. 14th International Workshop on
Conference_Location :
Rome
Print_ISBN :
978-1-4244-3365-0
Electronic_ISBN :
978-2-35500-008-9
DOI :
10.1109/THERMINIC.2008.4669891