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Design of symmetrical half-bridge converter with a series coupling capacitor

Ruchi Rashmi (Department of Instrumentation Science, Savitribai Phule Pune University, Pune, India)
Shweta Jagtap (Department of Instrumentation Science, Savitribai Phule Pune University, Pune, India)

World Journal of Engineering

ISSN: 1708-5284

Article publication date: 30 June 2020

Issue publication date: 30 June 2020

216

Abstract

Purpose

With the advancement of technology, size, cost, and losses of the switched mode power supply (SMPS) have been decreasing. However, due to the high frequency switching, design of magnetic drives and isolation circuits are becoming a crucial factor in SMPS. This paper presents design criteria, procedure and implementation of AC-DC half bridge (HB) converter with lower cost, smaller size and lower voltage stress on the power switch.

Design/Methodology/approach

The HB converter is designed in a symmetrical mode with a series coupling capacitor. Isolated power supplies are used for the converter and control circuit. Further, a transformer based isolated gate driver is used to drive both MOSFETs. The control IC works in voltage control mode to regulate voltage by controlling the duty cycle of the MOSFETs.

Findings

Control characteristics and performance of the HB converter is simulated using the MATLAB software and prototype of 170 W HB converter is built to validate the analytical results under variable load current and source voltage. The power quality and variation of load voltage at 2 A, 5 A, 7 A are reported.

Originality/value

This paper presents the design of a low-cost HB converter in a symmetrical mode which saves the additional cost of symmetric correction circuit normally required in asymmetrical mode design. This paper also focuses on the selection of primary and secondary side switch, series coupling capacitor, commuting diode, isolated drive and charge equalizer resistor.

Keywords

Citation

Rashmi, R. and Jagtap, S. (2020), "Design of symmetrical half-bridge converter with a series coupling capacitor", World Journal of Engineering, Vol. 17 No. 5, pp. 609-620. https://doi.org/10.1108/WJE-09-2019-0280

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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