Islanded operation and system restoration with converter interfaced distributed generation

The current practice of distributed generation disconnection for every fault in a distribution network drastically reduces the reliability when the penetration level of distributed generators (DGs) is high. Fault isolation, islanded operation, arc extinction and system restoration after a fault are...

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Main Authors: Dewadasa, M., Ghosh, Arindam, Ledwich, G.
Other Authors: Professor Syed Islam
Format: Conference Paper
Published: Institute of Electrical and Electronics Engineers ( IEEE ) 2011
Online Access:http://hdl.handle.net/20.500.11937/33809
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author Dewadasa, M.
Ghosh, Arindam
Ledwich, G.
author2 Professor Syed Islam
author_facet Professor Syed Islam
Dewadasa, M.
Ghosh, Arindam
Ledwich, G.
author_sort Dewadasa, M.
building Curtin Institutional Repository
collection Online Access
description The current practice of distributed generation disconnection for every fault in a distribution network drastically reduces the reliability when the penetration level of distributed generators (DGs) is high. Fault isolation, islanded operation, arc extinction and system restoration after a fault are the major protection barriers which will prevent DGs from maintaining connection during a fault. In this paper, a protection scheme and an intelligent control strategy for converter interfaced DGs are proposed for a distribution network containing higher DG penetration level. The proposals can be used to maximize the DG benefits by maintaining as many DG connections as possible either in grid connected or islanded mode. The protection scheme is proposed using overcurrent relays with the aid of communication to isolate the faults in the network. The intelligent control strategy for a converter interfaced DG will enable fault detection of relays, self extinction of arc faults and automatic restoration of the network after a fault. These proposed strategies will prevent immediate DG disconnections from the network. The results are validated using MATLAB calculations and PSCAD simulations.
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publishDate 2011
publisher Institute of Electrical and Electronics Engineers ( IEEE )
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spelling curtin-20.500.11937-338092017-02-28T01:52:34Z Islanded operation and system restoration with converter interfaced distributed generation Dewadasa, M. Ghosh, Arindam Ledwich, G. Professor Syed Islam The current practice of distributed generation disconnection for every fault in a distribution network drastically reduces the reliability when the penetration level of distributed generators (DGs) is high. Fault isolation, islanded operation, arc extinction and system restoration after a fault are the major protection barriers which will prevent DGs from maintaining connection during a fault. In this paper, a protection scheme and an intelligent control strategy for converter interfaced DGs are proposed for a distribution network containing higher DG penetration level. The proposals can be used to maximize the DG benefits by maintaining as many DG connections as possible either in grid connected or islanded mode. The protection scheme is proposed using overcurrent relays with the aid of communication to isolate the faults in the network. The intelligent control strategy for a converter interfaced DG will enable fault detection of relays, self extinction of arc faults and automatic restoration of the network after a fault. These proposed strategies will prevent immediate DG disconnections from the network. The results are validated using MATLAB calculations and PSCAD simulations. 2011 Conference Paper http://hdl.handle.net/20.500.11937/33809 Institute of Electrical and Electronics Engineers ( IEEE ) restricted
spellingShingle Dewadasa, M.
Ghosh, Arindam
Ledwich, G.
Islanded operation and system restoration with converter interfaced distributed generation
title Islanded operation and system restoration with converter interfaced distributed generation
title_full Islanded operation and system restoration with converter interfaced distributed generation
title_fullStr Islanded operation and system restoration with converter interfaced distributed generation
title_full_unstemmed Islanded operation and system restoration with converter interfaced distributed generation
title_short Islanded operation and system restoration with converter interfaced distributed generation
title_sort islanded operation and system restoration with converter interfaced distributed generation
url http://hdl.handle.net/20.500.11937/33809