Title :
Optimal Design of Lossless Passive Snubber for DC/DC Converters
Author :
Huang, C.K. ; Chen, C.T. ; Nien, H.H. ; Changchien, S.K. ; Shieh, H.W.
Author_Institution :
Dept. of Electr. Eng., Chienkuo Technol. Univ., Changhua
fDate :
Aug. 30 2006-Sept. 1 2006
Abstract :
This paper presents an optimal design of lossless passive snubber for DC/DC converters, which offers an efficient and best design method. The proposed method can not only reduce the spike voltage Vdsp of a power switch in the circuit, but also raise the conversion efficiency of the converter. In this paper, we have used Taguchi method to create the optimal design of LC lossless snubber. It can overcome the chaotic drawback of trial-and-error method, the bias of one-factor-at-a-time experiments, and the disadvantage of too many trials for full-factorial experiments. In Taguchi method, the voltage V ds of power switch and source side current Iin are the quality characteristics of the circuit, and the snubber inductor L c, snubber capacitor CL, transformer leakage inductor Le, and switching frequency f are control factors which influence the circuit quality characteristics. According to the control factors and levels, this paper used an orthogonal array L9 (34) to implement experiments, and made a factor response table and graph. Eventually, the optimal values of the control factors Lc, CL, Le and f were decided and then increased ratio of S/N to 16.8%. The simulation results demonstrated that the proposed method applying to optimal design of LC lossless snubber circuit was feasible and efficient
Keywords :
DC-DC power convertors; Taguchi methods; power semiconductor switches; power supply circuits; snubbers; DC-DC converters; LC lossless passive snubber; Taguchi method; factor response table; one-factor-at-a-time experiment; optimal design; orthogonal array; power switch circuit; spike voltage; switching frequency; trial-and-error method; Chaos; DC-DC power converters; Design methodology; Digital signal processing; Inductors; Snubbers; Switched capacitor circuits; Switching converters; Switching frequency; Voltage;
Conference_Titel :
Innovative Computing, Information and Control, 2006. ICICIC '06. First International Conference on
Conference_Location :
Beijing
Print_ISBN :
0-7695-2616-0
DOI :
10.1109/ICICIC.2006.126