DocumentCode :
1761087
Title :
Optimized Power Stage Design of Low Source Current Ripple Fourth-Order Boost DC–DC Converter: A PSO Approach
Author :
Veerachary, Mummadi ; Saxena, Anmol Ratna
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Delhi, New Delhi, India
Volume :
62
Issue :
3
fYear :
2015
fDate :
42064
Firstpage :
1491
Lastpage :
1502
Abstract :
In this paper, a particle swarm optimization (PSO)-based design of power stage components of a fourth-order dc-dc converters is presented. A low source current ripple fourth-order boost converter is analyzed and used the PSO algorithm for its energy storage elements design and optimization. Through time-domain analysis, state-space models are established, and then, discrete-time-domain transfer functions are formulated. The origin of an up-down glitch in the control-to-output transfer function and its implications on dynamics is addressed. A generalized optimization procedure, based on PSO, with a possibility to extend for other higher order topologies is proposed to resolve the contradictory issues of steady-state and dynamic performance requirements. A 12- to 28-V 30-W prototype converter is used to compare the steady-state and dynamic performance both in simulation and experiment. The distinct feature of low source current ripple of the converter and its PSO-based optimized design is experimentally demonstrated.
Keywords :
DC-DC power convertors; machine control; particle swarm optimisation; state-space methods; time-domain analysis; transfer functions; PSO approach; PSO-based optimized design; control-to-output transfer function; current ripple fourth-order boost DC-DC converter; discrete time-domain transfer functions; dynamic performance requirements; energy storage elements design optimization; generalized optimization procedure; higher order topology; optimized power stage design; particle swarm optimization; power 30 W; power stage components; prototype converter; state-space model; steady-state performance requirements; time-domain analysis; up-down glitch; voltage 12 V to 28 V; DC-DC power converters; Damping; Inductors; Linear programming; Optimization; Steady-state; Topology; DC-DC Converter; DC???DC converter; Digital Controller; Fourthorder Boost Converter; Particle Swarm Optimization; RHP Zero; digital controller; fourth-order boost converter (FOBC); particle swarm optimization (PSO); right-half s-plane (RHP) zero;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2014.2361316
Filename :
6915907
Link To Document :
بازگشت