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High power medium voltage DC grid-co...
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Chen, Wu.
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High power medium voltage DC grid-connected converter for renewable energy generation
Record Type:
Electronic resources : Monograph/item
Title/Author:
High power medium voltage DC grid-connected converter for renewable energy generation/ by Wu Chen ...[et al.].
other author:
Chen, Wu.
Published:
Singapore :Springer Nature Singapore : : 2024.,
Description:
viii, 182 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Resonant switched-capacitor step-up DC/DC converter -- LC parallel resonant step-up DC/DC converter -- Auxiliary-and-main-currents-diversion (AMCD) ZCS full-bridge converter -- AMCD ZCS full-bridge resonant converter -- AMCD ZCS DC/DC converter with low votlage stress -- High-power high-voltage discontinuos current mode LC series converter -- ±35 kV/500 kW PV DC grid-connected modular IPOS converter -- ±35 kV/500 kW PV DC grid-connected high frequency resonant converter -- ±35 kV/500 kW PV DC grid-connected medium frequency converter.
Contained By:
Springer Nature eBook
Subject:
DC-to-DC converters. -
Online resource:
https://doi.org/10.1007/978-981-97-4950-8
ISBN:
9789819749508
High power medium voltage DC grid-connected converter for renewable energy generation
High power medium voltage DC grid-connected converter for renewable energy generation
[electronic resource] /by Wu Chen ...[et al.]. - Singapore :Springer Nature Singapore :2024. - viii, 182 p. :ill., digital ;24 cm. - CPSS power electronics series,2520-8861. - CPSS power electronics series..
Introduction -- Resonant switched-capacitor step-up DC/DC converter -- LC parallel resonant step-up DC/DC converter -- Auxiliary-and-main-currents-diversion (AMCD) ZCS full-bridge converter -- AMCD ZCS full-bridge resonant converter -- AMCD ZCS DC/DC converter with low votlage stress -- High-power high-voltage discontinuos current mode LC series converter -- ±35 kV/500 kW PV DC grid-connected modular IPOS converter -- ±35 kV/500 kW PV DC grid-connected high frequency resonant converter -- ±35 kV/500 kW PV DC grid-connected medium frequency converter.
The book focuses on the topology and modulation of non-isolated and isolated high-power DC/DC converters. Firstly, two non-isolated soft-switching resonant step-up structures are proposed. Secondly, the auxiliary-and-main-currents-diversion idea is introduced to significantly reduce the switching loss of the converter, based on which a series of isolated ZCS resonant converters is proposed. Thirdly, the transformer magnetic flux density of isolated resonant converter is totally studied and an asymmetric pulse frequency modulation is proposed to avoid the transformer saturation problem. Finally, three different types of ±35kV/500kW DC grid-connected converters are successfully demonstrated in Zhangbei Renewable Energy Base of China.
ISBN: 9789819749508
Standard No.: 10.1007/978-981-97-4950-8doiSubjects--Topical Terms:
546718
DC-to-DC converters.
LC Class. No.: TK7872.C8
Dewey Class. No.: 621.3815322
High power medium voltage DC grid-connected converter for renewable energy generation
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Introduction -- Resonant switched-capacitor step-up DC/DC converter -- LC parallel resonant step-up DC/DC converter -- Auxiliary-and-main-currents-diversion (AMCD) ZCS full-bridge converter -- AMCD ZCS full-bridge resonant converter -- AMCD ZCS DC/DC converter with low votlage stress -- High-power high-voltage discontinuos current mode LC series converter -- ±35 kV/500 kW PV DC grid-connected modular IPOS converter -- ±35 kV/500 kW PV DC grid-connected high frequency resonant converter -- ±35 kV/500 kW PV DC grid-connected medium frequency converter.
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The book focuses on the topology and modulation of non-isolated and isolated high-power DC/DC converters. Firstly, two non-isolated soft-switching resonant step-up structures are proposed. Secondly, the auxiliary-and-main-currents-diversion idea is introduced to significantly reduce the switching loss of the converter, based on which a series of isolated ZCS resonant converters is proposed. Thirdly, the transformer magnetic flux density of isolated resonant converter is totally studied and an asymmetric pulse frequency modulation is proposed to avoid the transformer saturation problem. Finally, three different types of ±35kV/500kW DC grid-connected converters are successfully demonstrated in Zhangbei Renewable Energy Base of China.
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Energy (SpringerNature-40367)
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EB TK7872.C8
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