Title :
Enhanced-accuracy augmented state-space approach to steady-state modeling of resonant converters
Author :
Kumar, Ashish ; Lu, Jie ; Afridi, Khurram K.
Author_Institution :
Dept. of Electrical, Computer and Energy Engineering, University of Colorado, Boulder, USA
Abstract :
This paper presents a highly accurate method to model resonant converters based on an enhanced augmented state-space technique. The proposed approach includes an optimized numerical algorithm that predicts the steady-state converter waveforms with accuracy and computational efficiency. Modeling accuracy is further enhanced through the inclusion of rectifier non-idealities. This approach is particularly well-suited to resonant converters with high-order resonant networks, especially those with multiple inverters and/or rectifiers, which cannot be easily analyzed using existing approaches. The effectiveness of the modeling approach is validated using the recently proposed impedance control network (ICN) converter, which comprises a high-order resonant network and multiple phase-shifted inverters. Excellent agreement is shown to exist between the modeled and experimental waveforms.
Keywords :
Accuracy; Computational modeling; Integrated circuit modeling; Inverters; Mathematical model; Rectifiers; Switches; dc/dc converter; high-order resonant tank; resonant converter; state space modeling;
Conference_Titel :
Control and Modeling for Power Electronics (COMPEL), 2015 IEEE 16th Workshop on
Conference_Location :
Vancouver, BC, Canada
DOI :
10.1109/COMPEL.2015.7236452