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Design considerations for high-power converters interfacing 10 MW superconducting wind power generators

Vedre�o Santos, Francisco; Odavic, Milijana; Guan, Yang; Azar, Ziad; Thomas, Arwyn; Li, Guang-Jin; Zhu, Z.Q.

Authors

Milijana Odavic

Yang Guan

Ziad Azar

Arwyn Thomas

Guang-Jin Li

Z.Q. Zhu



Abstract

The design of power electronic converters for the integration of wind generated power into the grid is more and more important due to a new class of Superconducting Generators (SG) with power ratings of up to 20 MW. High efficiency of power converters for high power applications is mandatory in order to reduce the overall cost of the system. This paper proposes a design method to minimise the cost of the system by finding the optimal number of power devices and capacitors for different high power converter topologies. The investigation focuses on determining the optimal number of voltage levels for a Back-To-Back (BTB) Neutral Point Clamped (NPC) converter. The design method is demonstrated by estimating the cost of different BTB NPC power converter topologies for the integration of a 10 MW SG to the grid

Citation

Vedreño Santos, F., Odavic, M., Guan, Y., Azar, Z., Thomas, A., Li, G., & Zhu, Z. (2017). Design considerations for high-power converters interfacing 10 MW superconducting wind power generators. IET Power Electronics, 10(12), 1461-1467. https://doi.org/10.1049/iet-pel.2016.0512

Journal Article Type Article
Acceptance Date May 16, 2017
Online Publication Date Oct 16, 2017
Publication Date Oct 16, 2017
Deposit Date May 18, 2017
Publicly Available Date May 18, 2017
Journal IET Power Electronics
Electronic ISSN 1755-4543
Publisher Institution of Engineering and Technology (IET)
Peer Reviewed Peer Reviewed
Volume 10
Issue 12
Pages 1461-1467
DOI https://doi.org/10.1049/iet-pel.2016.0512
Keywords Power electronic converters, wind generated power, Superconducting Generators (SG),
Public URL http://researchrepository.napier.ac.uk/Output/848146

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Copyright Statement
This paper is a postprint of a paper submitted to and accepted for publication in IET POwer Electronics and is subject to Institution of Engineering and Technology Copyright. The copy of record is
available at the IET Digital Library







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