DocumentCode :
1447448
Title :
Stability and Robust Regulation of Battery-Driven Boost Converter With Simple Feedback
Author :
Yao Yao ; Fassinou, Fidegnon ; Tingshu Hu
Author_Institution :
Vicor Corp., Andover, MA, USA
Volume :
26
Issue :
9
fYear :
2011
Firstpage :
2614
Lastpage :
2626
Abstract :
This paper investigates the problem of regulating the output voltage of a battery-driven boost converter, where the load is uncertain or changes within a certain range. The battery is modeled with a second order circuit with two capacitors. A state-space approach is developed for estimating the parameters of the battery. By using the state-space averaging method, the open-loop system for regulating the output voltage is described as a sixth order differential equation with a bilinear term and input constraints. A simple saturated state feedback is designed by solving some optimization problem with linear matrix inequality constraints. The optimized controller is very close to an integrator feedback. Using the newly developed Lyapunov method, we analyze the stability and regulation of the closed-loop bilinear system including the battery dynamics. Computation shows that both the optimized state feedback and the integrator feedback can achieve practically global regulation in the presence of uncertain load and uncertain battery voltage. The results are validated by experimental systems. The effect of discontinuous conduction mode on transient response is discussed via simulation and experiment.
Keywords :
Lyapunov methods; bilinear systems; closed loop systems; differential equations; feedback; linear matrix inequalities; optimal control; optimisation; parameter estimation; power convertors; robust control; voltage control; Lyapunov method; battery-driven boost converter robust regulation; capacitors; closed-loop bilinear system; integrator feedback; linear matrix inequality constraints; open-loop system; optimization problem; optimized controller; optimized state feedback; output voltage regulation; parameter estimation; second order circuit; sixth order differential equation; state-space averaging method; transient response; Batteries; Capacitors; Converters; Load modeling; Mathematical model; Stability analysis; Voltage control; Battery model; LMI; bilinear system; boost converter; robust regulation; saturation; stability;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2011.2112781
Filename :
5710986
Link To Document :
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