DocumentCode :
553406
Title :
MASH Δ-Σ DPWM based sliding-mode controller dedicating to high frequency SMPS
Author :
Bo Li ; Shuibao Guo ; Xuefang Lin-Shi ; Allard, Bruno
Author_Institution :
Lab. AMPERE, INSA de Lyon, Villeurbanne, France
fYear :
2011
fDate :
Aug. 30 2011-Sept. 1 2011
Firstpage :
1
Lastpage :
9
Abstract :
The high resolution digital pulse width modulator (DPWM) becomes a crucial part in digital controller for power converters that requires a fast system clock, especially applied to a high switching frequency SMPS. This paper proposes two solutions, the dithering Multi-stAge-noise-Shaping (MASH) and the 2-2 MASH delta-sigma (Δ-Σ) DPWM, so as to alleviate the inherent idle tone effects. An improved sliding mode controller (SMC) is also introduced here exhibiting better performance than the traditional PID compensator. Mixed-signal simulation are presented to demonstrate the theoretical analysis. Experimental results verify the SMPS close-loop operation on 3 V input with 5 V output, 1 A DC-DC boost converter at 1 MHz switching frequency, using a Virtex-II FPGA platform. A digital controller integrated chip (IC) including both DPWM and SMC is introduced as a verification prototype that potentially achieves switching frequency beyond 10MHz.
Keywords :
delta-sigma modulation; digital control; switched mode power supplies; variable structure systems; DC-DC boost converter; MASH DPWM; current 1 A; digital controller; digital pulse width modulator; dithering multistage-noise-shaping; fast system clock; frequency 1 MHz; high frequency SMPS; mixed-signal simulation; power converters; sliding-mode controller; switching frequency; voltage 3 V; voltage 5 V; Clocks; Frequency modulation; Multi-stage noise shaping; Noise; Switching frequency; Delta-sigma modulator; Digital PWM; Digital control; FPGA; High frequency power converter; Sliding mode control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Applications (EPE 2011), Proceedings of the 2011-14th European Conference on
Conference_Location :
Birmingham
Print_ISBN :
978-1-61284-167-0
Electronic_ISBN :
978-90-75815-15-3
Type :
conf
Filename :
6020263
Link To Document :
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