Detection of fiber faults in passive optical networks

Wider deployment of fiber in the last mile is driven by increased customer needs for broadband communication services. This deployment requires solutions that reduce operational expenditures for the operator. A cost-efficient fully reliable and accurate monitoring solution supporting fault detection...

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Veröffentlicht in:Journal of optical communications and networking 2013-11, Vol.5 (11), p.1111-1121
Hauptverfasser: Urban, P. J., Getaneh, A., von der Weid, J. P., Temporao, G. P., Vall-llosera, G., Chen, J.
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container_end_page 1121
container_issue 11
container_start_page 1111
container_title Journal of optical communications and networking
container_volume 5
creator Urban, P. J.
Getaneh, A.
von der Weid, J. P.
Temporao, G. P.
Vall-llosera, G.
Chen, J.
description Wider deployment of fiber in the last mile is driven by increased customer needs for broadband communication services. This deployment requires solutions that reduce operational expenditures for the operator. A cost-efficient fully reliable and accurate monitoring solution supporting fault detection, identification, and localization in different fiber access architectures will be essential. In this article, we present a fast, automatic, and precise monitoring method applicable to both power-splitter- and wavelength-router-based passive optical networks through the combined techniques of optical time domain reflectometry and optical transceiver monitoring. The description of the architecture, components, and process flow is followed by tests on setups with live data transmission.
doi_str_mv 10.1364/JOCN.5.001111
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source IEEE Electronic Library (IEL)
subjects Architecture
Fault detection and localization
Fiber optics communications
Monitoring
Optical fibers
Optical reflection
Optical time domain reflectometry
Optical transmitters
Passive optical network
Passive optical networks
title Detection of fiber faults in passive optical networks
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