DocumentCode :
2794138
Title :
AC fault ride-through capability of a VSC-HVDC transmission systems
Author :
Adam, G.P. ; Ahmed, K.H. ; Finney, S.J. ; Williams, B.W.
Author_Institution :
Electron. & Electr. Eng. Dept., Univ. of Strathclyde, Glasgow, UK
fYear :
2010
fDate :
12-16 Sept. 2010
Firstpage :
3739
Lastpage :
3745
Abstract :
This paper presents a recovery strategy that enables DC transmission systems based on voltage source converters to ride-through different ac faults with minimum current and voltage stresses on the converter switching devices. The proposed recovery strategy eliminates the trapped energy in the dc link during ac faults; as a result the rise in the dc link voltage is prevented. This may eliminate the need for the dc chopper in the dc link, as proposed in the literature, to dissipate the trapped energy. To demonstrate the effectiveness of the recovery strategy, several fault conditions are considered, including, symmetrical and asymmetrical faults. The proposed recovery strategy improves the resiliency of the VSC-HVDC transmission system to different ac faults, which can be summarized as follows: limited current contribution to the fault and limited current and voltage stress on the switching devices as the rise in the dc link voltage is significantly reduced or prevented.
Keywords :
HVDC power transmission; choppers (circuits); power convertors; power transmission faults; AC fault ride-through capability; VSC-HVDC transmission systems; converter switching devices; dc chopper; dc link voltage; limited current contribution; limited current stress; limited voltage stress; voltage source converters; Circuit faults; Control systems; Power conversion; Reactive power; Stress; Voltage control; AC fault ride-through capability; sinusoidal pulse width modulation; static synchronous compensator; voltage source converter based dc transmission system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2010 IEEE
Conference_Location :
Atlanta, GA
Print_ISBN :
978-1-4244-5286-6
Electronic_ISBN :
978-1-4244-5287-3
Type :
conf
DOI :
10.1109/ECCE.2010.5617786
Filename :
5617786
Link To Document :
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