A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion

In order to improve the power factor and reduce the input current harmonics, power factor correction (PFC) converters are utilized. This paper introduces a single-stage continuous conduction mode (CCM) soft-switched power factor correction (PFC) converter with a tandem topology. The proposed topolog...

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Main Authors: Jianming Xu, Bo Qian, Muhammad Humayun
Format: Article
Language:English
Published: MDPI AG 2018-10-01
Series:Inventions
Subjects:
Online Access:http://www.mdpi.com/2411-5134/3/4/70
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spelling doaj-e6a88e2a2b29489dabddfe92e20a24502020-11-24T21:18:02ZengMDPI AGInventions2411-51342018-10-01347010.3390/inventions3040070inventions3040070A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current DistortionJianming Xu0Bo Qian1Muhammad Humayun2State Grid Changzhou Power Supply Company, Changzhou 213022, ChinaState Grid Changzhou Power Supply Company, Changzhou 213022, ChinaDepartment of Automation, School of Electronics Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, ChinaIn order to improve the power factor and reduce the input current harmonics, power factor correction (PFC) converters are utilized. This paper introduces a single-stage continuous conduction mode (CCM) soft-switched power factor correction (PFC) converter with a tandem topology. The proposed topology has two operating modes, namely resonant operation mode and boost operation mode. Such a design and control realizes the zero-voltage switching (ZVS) and zero current switching (ZCS) of the power switches. The proposed topology has been introduced to reduce the total harmonic distortion (THD) of the input current further in the boost PFC converter under lower power and higher output voltage conditions. The simulation and experimental results are presented to verify the effectiveness of the performance of the proposed design and its control.http://www.mdpi.com/2411-5134/3/4/70tandemresonantboostpower factor control (PFC)total harmonics distortion (THD)
collection DOAJ
language English
format Article
sources DOAJ
author Jianming Xu
Bo Qian
Muhammad Humayun
spellingShingle Jianming Xu
Bo Qian
Muhammad Humayun
A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion
Inventions
tandem
resonant
boost
power factor control (PFC)
total harmonics distortion (THD)
author_facet Jianming Xu
Bo Qian
Muhammad Humayun
author_sort Jianming Xu
title A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion
title_short A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion
title_full A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion
title_fullStr A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion
title_full_unstemmed A Novel Single-Stage Tandem Soft-Switching Converter with Low Input Current Distortion
title_sort novel single-stage tandem soft-switching converter with low input current distortion
publisher MDPI AG
series Inventions
issn 2411-5134
publishDate 2018-10-01
description In order to improve the power factor and reduce the input current harmonics, power factor correction (PFC) converters are utilized. This paper introduces a single-stage continuous conduction mode (CCM) soft-switched power factor correction (PFC) converter with a tandem topology. The proposed topology has two operating modes, namely resonant operation mode and boost operation mode. Such a design and control realizes the zero-voltage switching (ZVS) and zero current switching (ZCS) of the power switches. The proposed topology has been introduced to reduce the total harmonic distortion (THD) of the input current further in the boost PFC converter under lower power and higher output voltage conditions. The simulation and experimental results are presented to verify the effectiveness of the performance of the proposed design and its control.
topic tandem
resonant
boost
power factor control (PFC)
total harmonics distortion (THD)
url http://www.mdpi.com/2411-5134/3/4/70
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