Browse > Article
http://dx.doi.org/10.6113/JPE.2012.12.3.399

Analysis of Parameter Effects on the Small-Signal Dynamics of Buck Converters with Average Current Mode Control  

Li, Ruqi (Cisco, Inc.)
O'Brien, Tony (Cisco, Inc.)
Lee, John (Cisco, Inc.)
Beecroft, John (Cisco, Inc.)
Hwang, Kenny (Cisco, Inc.)
Publication Information
Journal of Power Electronics / v.12, no.3, 2012 , pp. 399-409 More about this Journal
Abstract
In DC-DC Buck converters with average current mode control, the current loop compensator provides additional design freedom to enhance the converter current loop performance. On the other hand, the current loop circuit elements append substantial amount of complexity to not only the inner current loop but also the outer voltage loop, which makes it demanding to quantify circuit and operating parameter effects on the small-signal dynamics of such converters. Despite the difficulty, it is shown in this paper that parameter effects can be analyzed satisfactorily by using an existing small-signal model in conjunction with a newly proposed simplified alternative. As a result of the study, new insight into average current mode control is uncovered and discussed quantitatively. Measurable experimental results on a prototype averaged-current-mode-controlled Buck converter are provided to facilitate the analytical study with good correlation.
Keywords
Average current mode control; Buck converters; Parameters effects; Small signal average models;
Citations & Related Records
연도 인용수 순위
  • Reference
1 L. H. Dixon, "Average current-mode control of switching power supplies," Unitrode (Texas Instruments) Power Supply Design Seminar Manual, 1990.
2 J. Sun, R. Bass, "Modeling and practical design issues for average current control," in Proc. APEC, Vol. 2, pp. 980-986, 1999.
3 T. Suntio, J. Lempinen, I. Gadoura, K. Zenger, "Dynamic effects of inductor current ripple in average current mode control," in Proc. PESC, pp. 1259-1264, 2001.
4 W. Tang, F. Lee and R. B. Ridley, "Small-signal modeling of average current-mode control," IEEE Tram. Power Electron., Vol. 8, No. 2, pp. 112-119, Apr. 1993.   DOI   ScienceOn
5 P. Cooke, "Modeling average current mode control," in Proc. APEC, Vol. 1, pp. 256-262, 2000.
6 R. Li, "Modeling average-current-mode-controlled multi- phase Buck converters," in Proc. PESC, pp. 3299-3305, 2008.
7 R. Li, T. O'Brien, J. Lee, J. Beecroft, "A Unified small-signal analysis of DC-DC converters with average current mode control," in Proc. ECCE, pp. 647-654, 2009.
8 R. W. Erickson, D. Maksimovic, Fundamentals of Power Electronics, 2nd Edition, Kluwer Academic Publishers, 2001.
9 R. D. Middlebrook, "Topics in multiple-loop regulators and current-mode programming," IEEE Trans. Power Electron., Vol. 2, No. 2, pp. 109-124, Apr. 1987.   DOI   ScienceOn
10 R. Ridley, "A new, continuous-time model for current-mode control," IEEE Trans. Power Electron., Vol. 6, No. 2, pp. 271-280, Apr. 1991.   DOI   ScienceOn