DocumentCode :
267231
Title :
Input impedance modeling of digital controlled bi-directional DC/DC converter with inductor current feedback
Author :
Xing Li ; Hua Lin ; Hua Wang
Author_Institution :
State Key Lab. of Adv. Electromagn. Eng. & Technol., HuaZhong Univ. of Sci. & Technol., Wuhan, China
fYear :
2014
fDate :
5-8 Nov. 2014
Firstpage :
214
Lastpage :
219
Abstract :
To investigate the input impedance of digital-controlled bi-directional DC/DC converters, this paper develops a modeling method based on the sampled-data approach. Because the nonlinear pulse-width modulator generates sideband components, the sideband effect occurs in a closed-loop converter. And the sampling process of a digital controlled system can significantly influence the sideband components. Taking these effects into account, the simplified sampled-data model is proposed, which is applicable up to the switching frequency. In a current-mode-controlled buck converter, the introduced model predicts the loop gain is unchanged while alters the method of modulation (leading-edge, trailing-edge, etc.), while the conventional average model fails to explain this phenomenon. And the proposed model can suits the measured data of input impedance while there is a considerable gap at half of the switching frequency between the conventional model and the measured data. Simulation and experimental results are provided to verify the achievements of the proposed model.
Keywords :
DC-DC power convertors; PWM power convertors; closed loop systems; digital control; closed-loop converter; current-mode-controlled buck converter; digital controlled bi-directional DC-DC converter; digital controlled system; inductor current feedback; input impedance; input impedance modeling; loop gain; nonlinear pulse-width modulator; sampled-data approach; sampling process; sideband component; sideband components; sideband effect; simplified sampled-data model; switching frequency; Amplitude modulation; Computational modeling; Impedance; Inductors; Stability analysis; Transfer functions; digital control; high frequency; input impedance; stabilty;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location :
Shanghai
Type :
conf
DOI :
10.1109/PEAC.2014.7037857
Filename :
7037857
Link To Document :
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