DocumentCode :
63610
Title :
Application of a compact electrochemical energy storage to pulsed power systems
Author :
Huhman, B. ; Neri, Jesse ; Wetz, David
Author_Institution :
Plasma Phys. Div., Naval Res. Lab., Washington, DC, USA
Volume :
20
Issue :
4
fYear :
2013
fDate :
Aug-13
Firstpage :
1299
Lastpage :
1303
Abstract :
The Pulsed Power Physics Branch at the U.S. Naval Research Laboratory (NRL) is developing a battery-powered, rep-rate charger for a 60 kJ capacitor bank. The goal is to charge a 4800 μF capacitor to 5 kV in four seconds for a fifty shot burst. A bank of LiFePO4 batteries is used with a full H-bridge converter, a transformer, and a rectifier to transform ≈ 650 V battery voltage to a 5 kV secondary voltage. The LLC topology has been selected for the DC-DC converter, as it offers some advantages in minimizing converter weight and volume. Additionally, the LLC design enables resonant operation to switch at 50 kHz. The work to date has been focused on the design and construction of stable battery modules, and the converter design has been limited to basic circuit simulations and paper studies. Thermal management of the battery modules during operation is essential, as high temperatures will damage the cells. This work will discuss the design and testing of various cooling schemes, with results from experiments.
Keywords :
battery chargers; capacitor storage; cooling; power convertors; pulsed power supplies; secondary cells; testing; transformers; DC-DC converter; LLC topology; LiFePO4; US NRL; battery-powered charger; capacitance 4800 muF; capacitor bank; circuit simulations; compact electrochemical energy storage application; cooling scheme; frequency 50 kHz; full H-bridge converter; pulsed power systems; rep-rate charger; stable battery modules; testing; thermal management; transformer; voltage 5 kV; voltage 650 V; Batteries; Capacitors; Cold plates; Discharges (electric); Temperature measurement; Testing; Capacitor charger; batteries; electrochemical energy storage; energy storage; rep-rate;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2013.6571448
Filename :
6571448
Link To Document :
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