DocumentCode
1479571
Title
Fast-Shared Current Transient Response in High-Precision Interleaved Inverters
Author
Schellekens, Jan M. ; Duarte, Jorge L. ; Huisman, Henk ; Hendrix, Marcel A M
Author_Institution
Dept. of Electr. Eng., Eindhoven Univ. of Technol., Eindhoven, Netherlands
Volume
26
Issue
11
fYear
2011
Firstpage
3308
Lastpage
3317
Abstract
A robust self-interleaving mechanism for paralleled hysteresis-current-controlled inverters is proposed, featuring sustained switching under all load conditions. A fast interleaving technique that can be applied when no clamping of the output voltage occurs is combined with a self-interleaving mechanism that ensures correct switching during output-voltage-clamping conditions. The self-interleaving mechanism was analyzed using the state-plane method, extended to multiple modules in parallel. A minimum switching frequency and maximum duty cycle are guaranteed under all load conditions, enabling the use of low-cost bootstrap circuits to drive the high-side switches. The interleaving approach results in reduced volume of the passive components and improved dynamic response. Simulations were conducted to verify the combined operation of both methods, and measurements were performed on a 2.8-kW prototype zero-voltage-switching inverter with a discrete hysteresis current controller.
Keywords
bootstrap circuits; electric current control; invertors; switches; transient response; discrete hysteresis current controller; dynamic response; fast interleaving technique; fast-shared current transient response; high-precision interleaved inverter; high-side switch; low-cost bootstrap circuit; maximum duty cycle; minimum switching frequency; output-voltage-clamping condition; paralleled hysteresis-current-controlled inverter; power 2.8 kW; robust self-interleaving mechanism; state-plane method; zero-voltage-switching inverter; Clamps; Current control; Hysteresis; Inductors; Inverters; Switches; Switching frequency; Hysteresis current control; interleaved switching; voltage source inverter; zero voltage switching;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2011.2131683
Filename
5738352
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