DocumentCode
2746339
Title
Network monitoring for passively split optical fibre networks
Author
Selvan, B. ; Green, R.J. ; Haigh, N.R.
Author_Institution
Bradford Univ., UK
fYear
1997
fDate
35458
Firstpage
42491
Lastpage
42494
Abstract
Optical fibre networks offer an attractive solution to network operators for the distribution of video and other integrated broadband services to potential customers. One possible fibre network architecture for broadband distribution is the passive optical network (PON). It consists of a number of cascaded passive optical power splitters, originating from a single optical fibre, and it may be terminated at the customer´s premises with optical nodes, wherein each node may contain a number of optical connectors and other optical components. The maintenance of such passively split networks presents a new set of challenges to service providers, as due to the star topology, the various branches of the network are likely be equidistant from the transmitter such that they cannot be sensibly probed and addressed from the head-end via a conventional maintenance instrument such as the optical time domain reflectometer. A frequency domain reflectometry technique is employed for characterising and monitoring the passively split optical fibre network, wherein, the reflectometer (OFDR) continuously interrogates the fibre network by reporting upon the status of reflective nodes distributed throughout the PON
Keywords
optical fibre networks; PON; fibre network architecture; frequency domain reflectometry technique; integrated broadband services; network maintenance; network monitoring; network operators; optical components; optical connectors; optical fibre; optical nodes; passive optical network; passive optical power splitters; passively split optical fibre networks; reflective nodes status; service providers; star topology; transmitter; video distribution;
fLanguage
English
Publisher
iet
Conference_Titel
Optical Fibre Video, Audio and Data Systems (Digest No. 1997/038), IEE Colloquium on
Conference_Location
London
Type
conf
DOI
10.1049/ic:19970257
Filename
598332
Link To Document