Title :
Five-Terminal Switched Transformer Average Modeling and AC Analysis of PFC Converters
Author :
Rustom, Khalid ; Qiu, Weihong ; Iannello, Christopher ; Batarseh, Issa
Author_Institution :
Inc., Orlando
Abstract :
A simple and accurate five-terminal switched transformer average model is proposed and its generalized equations are derived. The proposed model is capable of both time domain and AC analysis of DC-DC, AC-DC, and is especially suitable for single-stage power factor correction (PFC) converters. Unlike other models presented in literature, the proposed switching cell includes the transformer leakage inductance, an intermediate bus input, and still addresses both continuous and discontinuous conduction modes. The model was applied to two topologies, the bi-flyback and the flyboost parallel/series forward converters. The time domain results show great accuracy when compared with the slower and time consuming switching simulation. The AC analysis is also predicted with greater accuracy exposing the dynamics of such converters, a task that was not as easily addressed before when the unique characteristics of single-stage are considered. The frequency domain analysis was also verified with experimental results for the bi-flyback converter. The model is very relevant to isolated flyback converters including the PFC examples provided, which are not as easily or as accurately modeled by other approaches.
Keywords :
power convertors; power factor correction; time-domain analysis; transformers; AC analysis; PFC converters; average modeling; bi-flyback converter; five terminal switched transformer; flyboost-parallel/series forward converter; frequency domain analysis; single-stage power factor correction converters; switching cell; time domain analysis; transformer leakage inductance; Accuracy; Analog-digital conversion; DC-DC power converters; Equations; Frequency domain analysis; Inductance; Power factor correction; Switching converters; Time domain analysis; Topology; Average modeling; modeling and simulation of power factor correction (PFC) converters;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2007.909193