Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell

Proton exchange membrane fuel cells (PEMFC) have been increasingly applied in clean and efficient distributed power generation systems in recent years. However, the output characteristics of PEMFC are relatively soft due to the influence of multiple polarization overvoltage. With the increasement of...

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Main Authors: Dai Fengjiao, Wang Xiang, Kang Wei
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/76/e3sconf_icepese2021_01008.pdf
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spelling doaj-041df3cb98f74fa28da48aeaa91123102021-08-09T08:02:26ZengEDP SciencesE3S Web of Conferences2267-12422021-01-013000100810.1051/e3sconf/202130001008e3sconf_icepese2021_01008Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cellDai FengjiaoWang XiangKang WeiProton exchange membrane fuel cells (PEMFC) have been increasingly applied in clean and efficient distributed power generation systems in recent years. However, the output characteristics of PEMFC are relatively soft due to the influence of multiple polarization overvoltage. With the increasement of current density, the output voltage shows to be a nonlinear downward trend. In addition, in order to ensure the lifetime of PEMFC, the output ripple current is often concerned. Considering above characteristics, in order to achieve efficient power transmission of the PEMFC system, this paper adopts the current-fed dual-active full-bridge (DAB) DC/DC converter topology, which can achieve soft switching of most switches. Furthermore, it can restrain the characteristics of the current ripple. Hence, the power transmission efficiency and current ripple requirements of PEMFC are fulfilled. Finally the current-fed DAB is designed and simulated through PSIM. The C-block is applied to simulate the PEMFC nonlinear power supply according to the actual PEMFC parameters. In order to achieve efficient constant power transmission of the nonlinear PEMFC, a novel power closed-loop control strategy is proposed.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/76/e3sconf_icepese2021_01008.pdfcurrent-fed dabproton exchange membrane fuel cellsoft switchdc/dc converter
collection DOAJ
language English
format Article
sources DOAJ
author Dai Fengjiao
Wang Xiang
Kang Wei
spellingShingle Dai Fengjiao
Wang Xiang
Kang Wei
Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell
E3S Web of Conferences
current-fed dab
proton exchange membrane fuel cell
soft switch
dc/dc converter
author_facet Dai Fengjiao
Wang Xiang
Kang Wei
author_sort Dai Fengjiao
title Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell
title_short Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell
title_full Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell
title_fullStr Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell
title_full_unstemmed Design and simulation of current-fed dual-active full-bridge DC/DC converter control system applied to proton exchange membrane fuel cell
title_sort design and simulation of current-fed dual-active full-bridge dc/dc converter control system applied to proton exchange membrane fuel cell
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Proton exchange membrane fuel cells (PEMFC) have been increasingly applied in clean and efficient distributed power generation systems in recent years. However, the output characteristics of PEMFC are relatively soft due to the influence of multiple polarization overvoltage. With the increasement of current density, the output voltage shows to be a nonlinear downward trend. In addition, in order to ensure the lifetime of PEMFC, the output ripple current is often concerned. Considering above characteristics, in order to achieve efficient power transmission of the PEMFC system, this paper adopts the current-fed dual-active full-bridge (DAB) DC/DC converter topology, which can achieve soft switching of most switches. Furthermore, it can restrain the characteristics of the current ripple. Hence, the power transmission efficiency and current ripple requirements of PEMFC are fulfilled. Finally the current-fed DAB is designed and simulated through PSIM. The C-block is applied to simulate the PEMFC nonlinear power supply according to the actual PEMFC parameters. In order to achieve efficient constant power transmission of the nonlinear PEMFC, a novel power closed-loop control strategy is proposed.
topic current-fed dab
proton exchange membrane fuel cell
soft switch
dc/dc converter
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/76/e3sconf_icepese2021_01008.pdf
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AT wangxiang designandsimulationofcurrentfeddualactivefullbridgedcdcconvertercontrolsystemappliedtoprotonexchangemembranefuelcell
AT kangwei designandsimulationofcurrentfeddualactivefullbridgedcdcconvertercontrolsystemappliedtoprotonexchangemembranefuelcell
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