Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages
This study concerns frequency relays and voltage relays applied to the protection of synchronous distributed generators operating in reactive power control mode without a frequency regulation function. The effect of active and reactive powers combination, load power factor, and reactive power imb...
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Online Access: | Babi, Bombay (2015) Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages, University of South Africa, Pretoria, <http://hdl.handle.net/10500/20705> http://hdl.handle.net/10500/20705 |
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ndltd-netd.ac.za-oai-union.ndltd.org-unisa-oai-uir.unisa.ac.za-10500-207052018-11-19T17:15:23Z Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages Babi, Bombay Du, S. Distributed generation Embedded generation Dispersed generation Renewable energy Frequency relay Voltage relay Islanding Anti-islanding Nondetection zone 621.313 Distributed generation of electric power Renewable energy sources Electric generators Electric relays Electrical engineering This study concerns frequency relays and voltage relays applied to the protection of synchronous distributed generators operating in reactive power control mode without a frequency regulation function. The effect of active and reactive powers combination, load power factor, and reactive power imbalance are investigated for their implication for the anti-islanding setting of the frequency relay. Results reveal that the effect of these factors must be considered when setting the relay for islanding detection. For the voltage relay, results reveal that the effect of active and reactive powers combination, load power factor, and active power imbalance must be considered when setting the relay for islanding detection. The effect of multi-stage tripping on the frequency relay ability to detect island was also investigated. Results show that multistage tripping can improve the anti-islanding performance of the frequency relay. Electrical Engineering M. Tech. (Electrical Engineering) 2016-06-28T10:30:58Z 2016-06-28T10:30:58Z 2015-11 Dissertation Babi, Bombay (2015) Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages, University of South Africa, Pretoria, <http://hdl.handle.net/10500/20705> http://hdl.handle.net/10500/20705 en 1 online resource (81 leaves) : illustrations |
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Distributed generation Embedded generation Dispersed generation Renewable energy Frequency relay Voltage relay Islanding Anti-islanding Nondetection zone 621.313 Distributed generation of electric power Renewable energy sources Electric generators Electric relays Electrical engineering |
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Distributed generation Embedded generation Dispersed generation Renewable energy Frequency relay Voltage relay Islanding Anti-islanding Nondetection zone 621.313 Distributed generation of electric power Renewable energy sources Electric generators Electric relays Electrical engineering Babi, Bombay Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
description |
This study concerns frequency relays and voltage relays applied to the protection of
synchronous distributed generators operating in reactive power control mode without
a frequency regulation function. The effect of active and reactive powers combination,
load power factor, and reactive power imbalance are investigated for their implication
for the anti-islanding setting of the frequency relay. Results reveal that the effect of
these factors must be considered when setting the relay for islanding detection. For
the voltage relay, results reveal that the effect of active and reactive powers
combination, load power factor, and active power imbalance must be considered when
setting the relay for islanding detection. The effect of multi-stage tripping on the
frequency relay ability to detect island was also investigated. Results show that multistage
tripping can improve the anti-islanding performance of the frequency relay. === Electrical Engineering === M. Tech. (Electrical Engineering) |
author2 |
Du, S. |
author_facet |
Du, S. Babi, Bombay |
author |
Babi, Bombay |
author_sort |
Babi, Bombay |
title |
Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
title_short |
Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
title_full |
Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
title_fullStr |
Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
title_full_unstemmed |
Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
title_sort |
setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages |
publishDate |
2016 |
url |
Babi, Bombay (2015) Setting frequency relays and voltage relays to protect synchronous distributed generators against islanding and abnormal frequencies and voltages, University of South Africa, Pretoria, <http://hdl.handle.net/10500/20705> http://hdl.handle.net/10500/20705 |
work_keys_str_mv |
AT babibombay settingfrequencyrelaysandvoltagerelaystoprotectsynchronousdistributedgeneratorsagainstislandingandabnormalfrequenciesandvoltages |
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1718794624285278208 |