Power unit impedance and distance protection functions during faults in the external power grid

This paper presents the problem of the risk of an unnecessary tripping of a generation unit’s underimpedance protection functions in circumstances of generator power swings following elimination of long-lasting fault in the external power grid. The fi rst part describes typical solutions of a genera...

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Main Author: Marcin Lizer
Format: Article
Language:English
Published: ENERGA SA 2012-12-01
Series:Acta Energetica
Subjects:
Online Access:http://actaenergetica.org/en/articles/acta-energetica-022012-2/power-unit-impedance-and-distance-protection-functions-during-faults-in-the-external-power-grid/
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spelling doaj-62862c0470ac47e8b2bb4c618a7aa8782020-11-24T23:40:43ZengENERGA SAActa Energetica2300-30222012-12-011342233Power unit impedance and distance protection functions during faults in the external power gridMarcin Lizer0Institute of Power Engineering in WarsawThis paper presents the problem of the risk of an unnecessary tripping of a generation unit’s underimpedance protection functions in circumstances of generator power swings following elimination of long-lasting fault in the external power grid. The fi rst part describes typical solutions of a generator impedance protection function (21e) and unit distance protection function (21s). Starting characteristics of these protection functions are shown, as well as their typical operating logics and ways of calculating their settings. Then exemplary (the most common) solutions of unit under-impedance relays power swing blocking functions are described. Following this introduction, the issues of the threat of unnecessary operation of fast-tripping protection zones of 21e and 21s protection functions are described, which arises in the circumstances of generator asynchronous power swings occurring after elimination of long-lasting faults in the grid supplied by the power unit. The paper also shows that the available power swing blocking functions may not be able to correctly detect the described conditions, thus allowing the unnecessary operation of under-impedance relays. How an impedance calculation algorithm affects the impedance trajectory seen by a protection relay is also resented.http://actaenergetica.org/en/articles/acta-energetica-022012-2/power-unit-impedance-and-distance-protection-functions-during-faults-in-the-external-power-grid/power unitpower swingstabilityunit impedance protection
collection DOAJ
language English
format Article
sources DOAJ
author Marcin Lizer
spellingShingle Marcin Lizer
Power unit impedance and distance protection functions during faults in the external power grid
Acta Energetica
power unit
power swing
stability
unit impedance protection
author_facet Marcin Lizer
author_sort Marcin Lizer
title Power unit impedance and distance protection functions during faults in the external power grid
title_short Power unit impedance and distance protection functions during faults in the external power grid
title_full Power unit impedance and distance protection functions during faults in the external power grid
title_fullStr Power unit impedance and distance protection functions during faults in the external power grid
title_full_unstemmed Power unit impedance and distance protection functions during faults in the external power grid
title_sort power unit impedance and distance protection functions during faults in the external power grid
publisher ENERGA SA
series Acta Energetica
issn 2300-3022
publishDate 2012-12-01
description This paper presents the problem of the risk of an unnecessary tripping of a generation unit’s underimpedance protection functions in circumstances of generator power swings following elimination of long-lasting fault in the external power grid. The fi rst part describes typical solutions of a generator impedance protection function (21e) and unit distance protection function (21s). Starting characteristics of these protection functions are shown, as well as their typical operating logics and ways of calculating their settings. Then exemplary (the most common) solutions of unit under-impedance relays power swing blocking functions are described. Following this introduction, the issues of the threat of unnecessary operation of fast-tripping protection zones of 21e and 21s protection functions are described, which arises in the circumstances of generator asynchronous power swings occurring after elimination of long-lasting faults in the grid supplied by the power unit. The paper also shows that the available power swing blocking functions may not be able to correctly detect the described conditions, thus allowing the unnecessary operation of under-impedance relays. How an impedance calculation algorithm affects the impedance trajectory seen by a protection relay is also resented.
topic power unit
power swing
stability
unit impedance protection
url http://actaenergetica.org/en/articles/acta-energetica-022012-2/power-unit-impedance-and-distance-protection-functions-during-faults-in-the-external-power-grid/
work_keys_str_mv AT marcinlizer powerunitimpedanceanddistanceprotectionfunctionsduringfaultsintheexternalpowergrid
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