Analysis and control of dual-output LCLC resonant converters, and the impact of leakage inductance

Ang, Y and Bingham, Chris and Foster, M P and Stone, D A (2007) Analysis and control of dual-output LCLC resonant converters, and the impact of leakage inductance. In: Power Electronics and Drive Systems, 2007. PEDS '07. 7th International Conference on , 27-30 Nov 2007, Bangkok, Thailand.

[img]
Preview
PDF
ang1.pdf - Whole Document

Download (4Mb)

Abstract

The analysis, design and control of 4th-order LCLC voltage-output series-parallel resonant converters (SPRCs) for the provision of multiple regulated outputs, is described. Specifically, state-variable concepts are developed to establish operating mode boundaries with which to describe the internal behaviour of dual-output resonant converters, and the impact of output leakage inductance. The resulting models are compared with those obtained from SPICE simulations and measurements from a prototype power supply under closed loop control to verify the analysis, modeling and control predictions.

Item Type: Conference or Workshop Item (Presentation)
Additional Information: The analysis, design and control of 4th-order LCLC voltage-output series-parallel resonant converters (SPRCs) for the provision of multiple regulated outputs, is described. Specifically, state-variable concepts are developed to establish operating mode boundaries with which to describe the internal behaviour of dual-output resonant converters, and the impact of output leakage inductance. The resulting models are compared with those obtained from SPICE simulations and measurements from a prototype power supply under closed loop control to verify the analysis, modeling and control predictions.
Keywords: Resonant power conversion
Subjects: H Engineering > H600 Electronic and Electrical Engineering
Divisions: College of Sciences > Faculty of Science > Lincoln School of Engineering
Depositing User: Paul Stewart
Date Deposited: 20 May 2010 21:04
Last Modified: 13 Mar 2013 08:38
URI: http://eprints.lincoln.ac.uk/id/eprint/2505

Actions (login required)

View Item View Item