DocumentCode :
17611
Title :
Design of a Semiactive Battery-Ultracapacitor Hybrid Energy Source
Author :
Kuperman, A. ; Aharon, I. ; Malki, S. ; Kara, A.
Author_Institution :
Hybrid Energy Sources R&D Lab., Ariel Univ. Center of Samaria, Israel
Volume :
28
Issue :
2
fYear :
2013
fDate :
Feb. 2013
Firstpage :
806
Lastpage :
815
Abstract :
Design of a battery-ultracapacitor semiactive hybrid for powering pulsed current loads is presented in this paper. The semiactive hybrid energy source consists of an ultracapacitor assisted Li-Ion battery, connected to the load via a dc-dc converter. The system is controlled such that the battery is supplying a near-constant current to satisfy the average load demand while the ultracapacitor supplies the dynamic component of the load current. The control algorithm is based on a well-known capacitance-emulating approach. As a result, a high-energy battery can be used despite the high-power load demand spikes. In addition, the battery-load voltage matching is not required and the control algorithm does not require load current sensing. It is shown that the proposed system performance is equivalent to the performance of a passive hybrid, employing a very high nonfeasible capacitance. Moreover, it is revealed that the battery current is independent of the capacitor size, which affects the load voltage ripple only. Extended simulation and experimental results are presented to demonstrate the feasibility of the approach.
Keywords :
DC-DC power convertors; lithium; secondary cells; supercapacitors; Li; battery-load voltage matching; capacitance-emulating approach; control algorithm; dc-dc converter; high-energy battery; high-power load demand spikes; lithium-ion battery; load current; load voltage ripple; near-constant current; pulsed current loads; semiactive battery-ultracapacitor hybrid energy source design; Batteries; Capacitance; Resistance; Supercapacitors; Topology; Voltage control; Battery; control; dc–dc converter; hybrid source; ultracapacitor;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2012.2203361
Filename :
6213590
Link To Document :
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