Soft-switching SiC power electronic conversion for distributed energy resources and storage applications

Power electronic conversion plays an important role in flexible AC or DC transmission and distribution systems, integration of renewable energy resources, and energy storage systems to enhance efficiency, controllability, stability, and reliability of the grid. The efficiency and reliability of powe...

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Main Authors: Keyan Shi, Jinyi Deng, An Zhao, Dehong Xu
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8952858/
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spelling doaj-369f4b2ae77c41f1a4b66b7b435a2a0f2021-04-23T16:10:20ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202019-01-01751340135410.1007/s40565-019-0560-38952858Soft-switching SiC power electronic conversion for distributed energy resources and storage applicationsKeyan Shi0Jinyi Deng1An Zhao2Dehong Xu3College of Electrical Engineering, Zhejiang University,Hangzhou,China,310027College of Electrical Engineering, Zhejiang University,Hangzhou,China,310027College of Electrical Engineering, Zhejiang University,Hangzhou,China,310027College of Electrical Engineering, Zhejiang University,Hangzhou,China,310027Power electronic conversion plays an important role in flexible AC or DC transmission and distribution systems, integration of renewable energy resources, and energy storage systems to enhance efficiency, controllability, stability, and reliability of the grid. The efficiency and reliability of power electronic conversion are critical to power system applications. One way to enhance the efficiency and reliability of power electronic conversion is soft-switching technology. This paper introduces a generic zero-voltage-switching (ZVS) technique based on silicon carbide (SiC) power device. Using the proposed ZVS technique, all semiconductor switching devices in a power converter can realize ZVS operations. Next, the applications of the ZVS technique in different power electronic conversion systems such as photovoltaic inverters, wind power systems, energy storage systems and flexible AC transmission system devices are discussed. Finally, as an example, the operation performance and efficiency improvement of a SiC metal-oxide-semiconductor field-effect transistor (MOSFET) ZVS back-to-back converter are discussed.https://ieeexplore.ieee.org/document/8952858/Power electronic conversionFlexible AC transmission systems (FACTS)Soft-switchingSiC MOSFETDistributed energy resources
collection DOAJ
language English
format Article
sources DOAJ
author Keyan Shi
Jinyi Deng
An Zhao
Dehong Xu
spellingShingle Keyan Shi
Jinyi Deng
An Zhao
Dehong Xu
Soft-switching SiC power electronic conversion for distributed energy resources and storage applications
Journal of Modern Power Systems and Clean Energy
Power electronic conversion
Flexible AC transmission systems (FACTS)
Soft-switching
SiC MOSFET
Distributed energy resources
author_facet Keyan Shi
Jinyi Deng
An Zhao
Dehong Xu
author_sort Keyan Shi
title Soft-switching SiC power electronic conversion for distributed energy resources and storage applications
title_short Soft-switching SiC power electronic conversion for distributed energy resources and storage applications
title_full Soft-switching SiC power electronic conversion for distributed energy resources and storage applications
title_fullStr Soft-switching SiC power electronic conversion for distributed energy resources and storage applications
title_full_unstemmed Soft-switching SiC power electronic conversion for distributed energy resources and storage applications
title_sort soft-switching sic power electronic conversion for distributed energy resources and storage applications
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2019-01-01
description Power electronic conversion plays an important role in flexible AC or DC transmission and distribution systems, integration of renewable energy resources, and energy storage systems to enhance efficiency, controllability, stability, and reliability of the grid. The efficiency and reliability of power electronic conversion are critical to power system applications. One way to enhance the efficiency and reliability of power electronic conversion is soft-switching technology. This paper introduces a generic zero-voltage-switching (ZVS) technique based on silicon carbide (SiC) power device. Using the proposed ZVS technique, all semiconductor switching devices in a power converter can realize ZVS operations. Next, the applications of the ZVS technique in different power electronic conversion systems such as photovoltaic inverters, wind power systems, energy storage systems and flexible AC transmission system devices are discussed. Finally, as an example, the operation performance and efficiency improvement of a SiC metal-oxide-semiconductor field-effect transistor (MOSFET) ZVS back-to-back converter are discussed.
topic Power electronic conversion
Flexible AC transmission systems (FACTS)
Soft-switching
SiC MOSFET
Distributed energy resources
url https://ieeexplore.ieee.org/document/8952858/
work_keys_str_mv AT keyanshi softswitchingsicpowerelectronicconversionfordistributedenergyresourcesandstorageapplications
AT jinyideng softswitchingsicpowerelectronicconversionfordistributedenergyresourcesandstorageapplications
AT anzhao softswitchingsicpowerelectronicconversionfordistributedenergyresourcesandstorageapplications
AT dehongxu softswitchingsicpowerelectronicconversionfordistributedenergyresourcesandstorageapplications
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