DocumentCode :
1295392
Title :
Parameter-Independent Time-Optimal Digital Control for Point-of-Load Converters
Author :
Corradini, Luca ; Costabeber, Alessandro ; Mattavelli, Paolo ; Saggini, Stefano
Author_Institution :
ECEE Dept., Univ. of Colorado at Boulder, Boulder, CO, USA
Volume :
24
Issue :
10
fYear :
2009
Firstpage :
2235
Lastpage :
2248
Abstract :
In this paper, a digital control approach is investigated for time-optimal load step response of DC-DC synchronous buck converters intended for point-of-load (PoL) applications and employing low-equivalent series resistance ceramic output capacitors. Unlike previously reported approaches, the proposed technique is insensitive to converter parametric variations and design uncertainties, as its operation does not rely on the knowledge of the output filter inductance or capacitance. The time-optimal response is achieved through a single on/off switching action undertaken as soon as a load transient is detected. In its most general formulation, the proposed technique automatically incorporates adaptive voltage positioning (AVP) regulation, according to the typical droop design guidelines for powering modern microprocessors. A simpler version, suitable for voltage-mode controlled PoL converters not requiring AVP positioning, is also presented. The technique employs an asynchronous A/D conversion scheme, which quantizes the converter state variables and triggers a nonlinear, event-based digital controller whenever a quantization level transition is detected. Additional sensing requirements are not needed, since the time-optimal transient is achieved through the measurement of the output voltage and, whenever AVP regulation is needed, of the phase currents. Effectiveness and properties of the proposed robust time-optimal approach are validated through both computer simulations and experimental tests on a synchronous buck converter prototype and a VHDL implementation of the control algorithm on an field programmable gate array device.
Keywords :
DC-DC power convertors; analogue-digital conversion; digital control; optimal control; step response; DC-DC synchronous buck converter; VHDL implementation; adaptive voltage positioning regulation; asynchronous A/D conversion scheme; capacitance; computer simulation; converter parametric variation; event-based digital controller; field programmable gate array device; load transient; low-equivalent series resistance ceramic output capacitor; microprocessor; output filter inductance; parameter-independent time-optimal digital control; phase current; point-of-load converter; quantization level transition; single on-off switching action; time-optimal control; time-optimal load step response; time-optimal response; voltage-mode controlled PoL converter; Asynchronous sampling; TIQ; dc-dc converters; digital control; point-of-load converters; time-optimal control;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2009.2022397
Filename :
5200403
Link To Document :
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