DocumentCode :
46885
Title :
Design and Stability Analysis of a Frequency Controlled Sliding-Mode Buck Converter
Author :
Labbe, Bastien ; Allard, Bruno ; Xuefang Lin-Shi
Author_Institution :
Nujira Ltd., Cambridge, UK
Volume :
61
Issue :
9
fYear :
2014
fDate :
Sept. 2014
Firstpage :
2761
Lastpage :
2770
Abstract :
Power management of mobile digital systems-on-chip necessitates large voltage regulation performances. DC/DC converters used to supply digital cores are facing stringent constraints with respect to load transients, reference tracking and accuracy. The fast transient response offered by sliding-mode control is well suited to DC/DC converters with fast varying load. Fixed switching-frequency is also mandatory for EMI and noise related issues. Fixed-switching frequency sliding-mode control has been experimented as a multi-loop system. There is a necessity to investigate the stability when multi-loops interact and the parameter set for each loop is quite large. The paper details a methodology for the stability analysis of a frequency-controlled sliding-mode DC/DC converter. The proposed stability analysis takes the possible cross-interactions into account and can be used to optimise the DC/DC controller without the limitations of a non-interaction criterion. As a verification a DC/DC converter is implemented in CMOS 130 nm. Experimental results agree with the analysis main recommendations.
Keywords :
CMOS integrated circuits; DC-DC power convertors; circuit stability; electromagnetic interference; frequency control; transient response; variable structure systems; CMOS technology; DC-DC converters; EMI; digital cores; fixed-switching frequency sliding-mode control; frequency controlled sliding-mode buck converter design; frequency controlled sliding-mode buck converter stability analysis; large voltage regulation performances; load transients; mobile digital system-on-chip; multiloop system; noise related issues; noninteraction criterion; power management; reference tracking; size 130 nm; Delays; Inductors; Mathematical model; Phase locked loops; Stability analysis; Switches; Voltage control; Cross-interactions; DC-DC power converters; phase-locked loop; sliding-mode control; stability analysis; switching frequency control;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2014.2333291
Filename :
6883247
Link To Document :
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