Averaged modelling of multilevel converters

Author:

Ammous Kaiçar,Haouas Elyes,Abid Slim

Abstract

PurposeThe purpose of this paper is to develop a simulation tool which permits reducing the cost of long time‐range simulation of complex converters and running at high frequency.Design/methodology/approachA different method is used to represent a simplified converter but the adopted technique uses the average representation of the cell converter.FindingsThe paper shows that the use of averaged representation of the pulse width modulation switch in multilevel converters is staying applied. The main advantage of the proposed averaged model is its simplified representation when only electrical behaviour is considered.Research limitations/implicationsThe analytical algorithm of the averaged model can be introduced in different simulator as it has a description language, enabling study of the Compatibilité Electromagnétique and electrothermal phenomena.Originality/valueThis paper presents an averaged model of the multilevel converter which can be implemented in any simulator as it has a description language.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

Reference11 articles.

1. Abid, S., Ammous, K., Morel, H. and Ammous, A. (2007), “PWM‐switch modeling of converters including semiconductor device non‐linearities: CCM and DCM conduction modes”, Power Systems WSEAS Transactions, Vol. 2 No. 3, pp. 384‐9.

2. Ammous, A., Ammous, K., Abid, M., Ounajjar, Y. and Sellami, F. (2003), “An advanced PWM‐switch model including semiconductor devices non‐linearities”, IEEE Transactions on Power Electronics, Vol. 18 No. 5, pp. 1230‐7.

3. Chen, J., Erickson, R. and Maksimovic, D. (2001), “Average switch modelling of boundary conduction mode DC‐to‐DC converters”, Proceedings of the IEEE Industrial Electronics Society Annual Conference (IECON 01), Denver, CO.

4. Filippich, M. (2002), “Digital control of a three phase induction motor”, PhD thesis, The University of Queensland, Brisbane.

5. Klima, J. (2004), “Analytical modelling of an induction motor fed by a four‐switch PWM VSI”, COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, Vol. 23 No. 2, pp. 487‐505.

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