Title :
Self-Discharge Characterization and Modeling of Electrochemical Capacitor Used for Power Electronics Applications
Author :
Diab, Yasser ; Venet, Pascal ; Gualous, Hamid ; Rojat, G?©rard
Author_Institution :
Univ. of Damascus, Damascus
Abstract :
The self-discharge of an electrochemical capacitor, also referred to as a supercapacitor, is an important factor in determining the duration of maintaining stored energy, especially in low-duty-cycle applications. The study of self-discharge is conducted as follows: first, the self-discharge is characterized by measuring the decline of open-circuit voltage of the electrochemical capacitor. Second, the mechanisms of self-discharge, leakage current, and diffusion of ions at the electrode-electrolyte interfaces are modeled by an electrical equivalent circuit. The equivalent circuit elements are experimentally determined according to the self-discharge time behavior. In addition, the dependence of the self-discharge parameters on both temperature and initial voltage across the electrochemical capacitor is described in detail.
Keywords :
electrochemical devices; power electronics; supercapacitors; electrical equivalent circuit; electrochemical capacitor; electrode-electrolyte interfaces; low-duty-cycle applications; power electronics applications; self-discharge characterization; supercapacitor; Electrochemical capacitor; self-discharge; self-discharge characterization; self-discharge modeling; supercapacitor;
Journal_Title :
Power Electronics, IEEE Transactions on
Conference_Location :
12/16/2008 12:00:00 AM
DOI :
10.1109/TPEL.2008.2007116