A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid

Aiming at the requirements of precise power distribution/transfer between bi-directional DC-DC converters, DC-DC converter and diesel generator converter, as well as connected/islanded seamless transition with onshore DC-grid, it proposed a P-V and SOC-I based dual-droop control method for DC-DC con...

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Main Authors: XU Rong, WANG Yue, PAN Gaofeng, HONG Xuewu, DENG Jianhua, ZHAO Haibin
Format: Article
Language:zho
Published: Editorial Office of Control and Information Technology 2020-01-01
Series:Kongzhi Yu Xinxi Jishu
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Online Access:http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2020.03.014
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author XU Rong
WANG Yue
PAN Gaofeng
HONG Xuewu
DENG Jianhua
ZHAO Haibin
author_facet XU Rong
WANG Yue
PAN Gaofeng
HONG Xuewu
DENG Jianhua
ZHAO Haibin
author_sort XU Rong
collection DOAJ
description Aiming at the requirements of precise power distribution/transfer between bi-directional DC-DC converters, DC-DC converter and diesel generator converter, as well as connected/islanded seamless transition with onshore DC-grid, it proposed a P-V and SOC-I based dual-droop control method for DC-DC converter. Buck-Boost dual-mode is employed to implement the bi-directional operation control of the energy storage batteries, and carrier phase-shift modulation can reduce the parallel-output current ripples of the multiple DC-DC converter. Simulation results verify the feasibility of the dual-droop control strategy.
format Article
id doaj-art-e3984d0ed7fe4f0da410996793f9e9b5
institution Kabale University
issn 2096-5427
language zho
publishDate 2020-01-01
publisher Editorial Office of Control and Information Technology
record_format Article
series Kongzhi Yu Xinxi Jishu
spelling doaj-art-e3984d0ed7fe4f0da410996793f9e9b52025-08-25T06:50:17ZzhoEditorial Office of Control and Information TechnologyKongzhi Yu Xinxi Jishu2096-54272020-01-0137737682321780A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-gridXU RongWANG YuePAN GaofengHONG XuewuDENG JianhuaZHAO HaibinAiming at the requirements of precise power distribution/transfer between bi-directional DC-DC converters, DC-DC converter and diesel generator converter, as well as connected/islanded seamless transition with onshore DC-grid, it proposed a P-V and SOC-I based dual-droop control method for DC-DC converter. Buck-Boost dual-mode is employed to implement the bi-directional operation control of the energy storage batteries, and carrier phase-shift modulation can reduce the parallel-output current ripples of the multiple DC-DC converter. Simulation results verify the feasibility of the dual-droop control strategy.http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2020.03.014onboard DC-gridpower distribution/transfervariable parameter droop controlcarrier phase shiftbi-directional DC-DC converterenergy storage
spellingShingle XU Rong
WANG Yue
PAN Gaofeng
HONG Xuewu
DENG Jianhua
ZHAO Haibin
A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid
Kongzhi Yu Xinxi Jishu
onboard DC-grid
power distribution/transfer
variable parameter droop control
carrier phase shift
bi-directional DC-DC converter
energy storage
title A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid
title_full A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid
title_fullStr A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid
title_full_unstemmed A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid
title_short A Control Strategy of Energy Storage Converter Based on Dual-droop Control for Onboard DC-grid
title_sort control strategy of energy storage converter based on dual droop control for onboard dc grid
topic onboard DC-grid
power distribution/transfer
variable parameter droop control
carrier phase shift
bi-directional DC-DC converter
energy storage
url http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2020.03.014
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