Acceptance tests conducted on optical ground wires for checking additional fibre length
Optical fibres integrated into overhead phase and earth conductors have been more and more used as communication links in the context of high voltage transmission line networks. In designing and manufacturing these conductors it is essential to take account of the fact that the glass fibre is highly...
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Published in | 14th International Conference and Exhibition on Electricity Distribution (CIRED 1997 - Distributing Power for the Millennium) pp. 3.40.1 - 3.40.2 |
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Main Authors | , |
Format | Conference Proceeding |
Language | English |
Published |
London
IEE
1997
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Subjects | |
Online Access | Get full text |
ISBN | 9780852966747 0852966741 |
ISSN | 0537-9989 |
DOI | 10.1049/cp:19970545 |
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Abstract | Optical fibres integrated into overhead phase and earth conductors have been more and more used as communication links in the context of high voltage transmission line networks. In designing and manufacturing these conductors it is essential to take account of the fact that the glass fibre is highly sensitive to axial and lateral strain as well as bending. The quality of the system-meaning optical fibre and surrounding conductor structure-can only be assessed by carrying out tests which simulate real-life loads. This means taking into account not only those parts of the stranded conductor that are in direct contact with the glass fibre-such as the gel, for example-but the entire system, including also the connections and fixing means. The authors describe the acceptance and creep tests for these cables. (2 pages) |
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AbstractList | Optical fibres integrated into overhead phase and earth conductors have been more and more used as communication links in the context of high voltage transmission line networks. In designing and manufacturing these conductors it is essential to take account of the fact that the glass fibre is highly sensitive to axial and lateral strain as well as bending. The quality of the system-meaning optical fibre and surrounding conductor structure-can only be assessed by carrying out tests which simulate real-life loads. This means taking into account not only those parts of the stranded conductor that are in direct contact with the glass fibre-such as the gel, for example-but the entire system, including also the connections and fixing means. The authors describe the acceptance and creep tests for these cables. (2 pages) |
Author | Thomas, R Marthen, W |
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Keywords | optical fibre testing glass fibre high voltage transmission line networks optical cables optical ground wires bending lateral strain axial strain stranded conductor creep test creep testing power overhead lines acceptance tests additional fibre length overhead earth conductors overhead phase conductors connections surrounding conductor structure Mechanical test Aluminum cable steel reinforced Acceptance test Optical cable Aerial cable Electrical cable Earth wire |
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Snippet | Optical fibres integrated into overhead phase and earth conductors have been more and more used as communication links in the context of high voltage... |
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StartPage | 3.40.1 |
SubjectTerms | Applied sciences Electric connection. Cables. Wiring Electrical engineering. Electrical power engineering Electrical power engineering Exact sciences and technology Fibre optics Materials testing Optical communication Overhead networks Overhead power lines Power networks and lines Various equipment and components |
Title | Acceptance tests conducted on optical ground wires for checking additional fibre length |
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