Ship Power System Analysis Based on Safety Aspects
This article analyses the reasons for the reduction of insulating resistance, processes influencing them and isolation diagnostic methods. It provides a short description of electrical safety situation on ships with isolated neutral electrical power systems. It also covers the methods of protecting...
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2017-08-01
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Online Access: | https://doi.org/10.1515/tae-2017-0012 |
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doaj-4a8b1066fdc0418db95a207df063c92e2021-09-05T20:51:30ZengSciendoTransport and Aerospace Engineering2255-98762017-08-01419610510.1515/tae-2017-0012tae-2017-0012Ship Power System Analysis Based on Safety AspectsUrbaha Margarita0Križus Arnis1Kreisberg Deniss2Institute of Aeronautics, Faculty of Mechanical Engineering, Transport and Aeronautics, Riga Technical University, Riga, LatviaInstitute of Aeronautics, Faculty of Mechanical Engineering, Transport and Aeronautics, Riga Technical University, Riga, LatviaChief Engineer at Fletcher Supply Vessels Ltd.UK, EstoniaThis article analyses the reasons for the reduction of insulating resistance, processes influencing them and isolation diagnostic methods. It provides a short description of electrical safety situation on ships with isolated neutral electrical power systems. It also covers the methods of protecting personnel from electric shock or preventing ignition or arching damage at the fault location with the help of fault current compensation. Principal fault current compensation circuit diagrams are analysed by using the minimum value and time of transient fault current as criteria.https://doi.org/10.1515/tae-2017-0012compensation methodselectrical power systeminsulating resistance |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Urbaha Margarita Križus Arnis Kreisberg Deniss |
spellingShingle |
Urbaha Margarita Križus Arnis Kreisberg Deniss Ship Power System Analysis Based on Safety Aspects Transport and Aerospace Engineering compensation methods electrical power system insulating resistance |
author_facet |
Urbaha Margarita Križus Arnis Kreisberg Deniss |
author_sort |
Urbaha Margarita |
title |
Ship Power System Analysis Based on Safety Aspects |
title_short |
Ship Power System Analysis Based on Safety Aspects |
title_full |
Ship Power System Analysis Based on Safety Aspects |
title_fullStr |
Ship Power System Analysis Based on Safety Aspects |
title_full_unstemmed |
Ship Power System Analysis Based on Safety Aspects |
title_sort |
ship power system analysis based on safety aspects |
publisher |
Sciendo |
series |
Transport and Aerospace Engineering |
issn |
2255-9876 |
publishDate |
2017-08-01 |
description |
This article analyses the reasons for the reduction of insulating resistance, processes influencing them and isolation diagnostic methods. It provides a short description of electrical safety situation on ships with isolated neutral electrical power systems. It also covers the methods of protecting personnel from electric shock or preventing ignition or arching damage at the fault location with the help of fault current compensation. Principal fault current compensation circuit diagrams are analysed by using the minimum value and time of transient fault current as criteria. |
topic |
compensation methods electrical power system insulating resistance |
url |
https://doi.org/10.1515/tae-2017-0012 |
work_keys_str_mv |
AT urbahamargarita shippowersystemanalysisbasedonsafetyaspects AT krizusarnis shippowersystemanalysisbasedonsafetyaspects AT kreisbergdeniss shippowersystemanalysisbasedonsafetyaspects |
_version_ |
1717783746519760896 |