High-power converter systems for hydrogen production
被引:0
作者:
Geske, Martin
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机构:
GE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, GermanyGE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, Germany
Geske, Martin
[1
]
Hildebrandt, Hani Sebastian
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h-index: 0
机构:
GE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, GermanyGE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, Germany
Hildebrandt, Hani Sebastian
[1
]
Jalili, Kamran
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h-index: 0
机构:
GE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, GermanyGE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, Germany
Jalili, Kamran
[1
]
Keller, Christian
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机构:
GE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, GermanyGE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, Germany
Keller, Christian
[1
]
机构:
[1] GE Energy Power Convers GmbH, Culemeyerstr 1, D-12277 Berlin, Germany
来源:
2023 25TH EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS, EPE'23 ECCE EUROPE
|
2023年
关键词:
Hydrogen;
Electrolysis;
Active front-end;
12-pulse rectifier;
DC-DC power converter;
D O I:
暂无
中图分类号:
TE [石油、天然气工业];
TK [能源与动力工程];
学科分类号:
0807 ;
0820 ;
摘要:
Hydrogen production from renewable energy through water electrolysis is one valuable option to reduce CO2 emissions. More and larger electrolysis systems can potentially cover an increasing demand for hydrogen. In this context, thyristor-based and voltage-source converters are presented and discussed for power ratings in the high megawatt range. The basic converter types are analyzed with a focus on the electrical characteristics and the system design. The described differences are significant for systems that consist of many electrolyzer units with a total installed capacity of up to a hundred megawatts and more.