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State-feedback control of an interleaved DC-DC boost converter

Lookup NU author(s): Giorgos Gkizas, Professor Damian Giaouris

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Abstract

© 2016 IEEE. This paper extends a recently proposed statefeedback control design method from a simple DC-DC boost converter to a multi-phase interleaved DC-DC boost converter with an arbitrary number of legs. Both static and dynamic state-feedback pole placement control laws are considered. In the case of static state-feedback control a bifurcation analysis procedure that can predict the generation of multiple equilibria is introduced. This analysis can be integrated into the control design so that multiple equilibria can be completely avoided or ruled out of the operating region of interest. The proposed control laws are digitally implemented and verified in a 2-leg case study using both simulation and real experimentation.


Publication metadata

Author(s): Gkizas G, Amanatidis C, Yfoulis C, Stergiopoulos F, Giaouris D, Ziogou C, Voutetakis S, Papadopoulou S

Publication type: Conference Proceedings (inc. Abstract)

Publication status: Published

Conference Name: 24th Mediterranean Conference on Control and Automation, MED 2016

Year of Conference: 2016

Pages: 931-936

Online publication date: 08/08/2016

Acceptance date: 02/04/2016

Publisher: IEEE

URL: http://doi.org/10.1109/MED.2016.7535901

DOI: 10.1109/MED.2016.7535901

Library holdings: Search Newcastle University Library for this item

ISBN: 9781467383455


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