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Pregled bibliografske jedinice broj: 632832

Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation


Miletić, Vedran; Mikac, Branko; Džanko, Matija
Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation // Proceedings of the 2013 18th European Conference on Networks and Optical Communications (NOC) / Leitgeb, Erich (ur.).
Graz, 2013. str. 249-255 (predavanje, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)


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Naslov
Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation

Autori
Miletić, Vedran ; Mikac, Branko ; Džanko, Matija

Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni

Izvornik
Proceedings of the 2013 18th European Conference on Networks and Optical Communications (NOC) / Leitgeb, Erich - Graz, 2013, 249-255

Skup
The 18th European Conference on Networks and Optical Communications NOC 2013

Mjesto i datum
Graz, Austrija, 10.07.2013. - 12.07.2013

Vrsta sudjelovanja
Predavanje

Vrsta recenzije
Međunarodna recenzija

Ključne riječi
optical networks; failure modeling; Monte Carlo simulation; network simulation; network simulator; ns-3; availability; shared risk link groups

Sažetak
In optical networks a group of logically distinct links can unintentionally share a physical resource (e.g. a cable or a duct). Such a group, called shared risk link group (SRLG), introduces a situation where a single failure of common resource can cause multiple failures. Failure of common resource usually occurs due to physical force (e.g. digging or earthquake) and causes failures of multiple links. Specifically, such a failure can cause both working and spare wavelength path of a logical connection between two edge nodes to fail at the same time, leaving them disconnected until a repair is done. The usual approach to solving this problem consists of introducing more spare capacity to the network and also using a routing algorithm that takes SRLGs into account when computing paths. Such a routing algorithm avoids creating working and spare path pairs that have links contained in the same SRLG, to minimize the negative impact of SRLG failure on logical connection availability. In this paper the impact of physical length of the SRLGs on network availability is evaluated using Monte Carlo simulation. New simulation model for availability evaluation is implemented by discrete-event network simulator ns-3. Implementation approach is discussed, and an overview of model features is provided. For simple cases, Monte Carlo simulation results obtained by using the model are compared to analytical results. The availability results for the general case are obtained using Monte Carlo simulation and discussed.

Izvorni jezik
Engleski

Znanstvena područja
Elektrotehnika, Računarstvo



POVEZANOST RADA


Projekti:
318-0362027-1331 - Sustav učenja na daljinu zasnovan na dijalogu za potrebe e-poslovanja (Kovačić, Božidar, MZOS ) ( CroRIS)

Ustanove:
Fakultet elektrotehnike i računarstva, Zagreb,
Fakultet informatike i digitalnih tehnologija, Rijeka

Profili:

Avatar Url Branko Mikac (autor)

Avatar Url Matija Džanko (autor)

Avatar Url Vedran Miletić (autor)

Poveznice na cjeloviti tekst rada:

Pristup cjelovitom tekstu rada

Citiraj ovu publikaciju:

Miletić, Vedran; Mikac, Branko; Džanko, Matija
Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation // Proceedings of the 2013 18th European Conference on Networks and Optical Communications (NOC) / Leitgeb, Erich (ur.).
Graz, 2013. str. 249-255 (predavanje, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
Miletić, V., Mikac, B. & Džanko, M. (2013) Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation. U: Leitgeb, E. (ur.)Proceedings of the 2013 18th European Conference on Networks and Optical Communications (NOC).
@article{article, author = {Mileti\'{c}, Vedran and Mikac, Branko and D\v{z}anko, Matija}, editor = {Leitgeb, E.}, year = {2013}, pages = {249-255}, keywords = {optical networks, failure modeling, Monte Carlo simulation, network simulation, network simulator, ns-3, availability, shared risk link groups}, title = {Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation}, keyword = {optical networks, failure modeling, Monte Carlo simulation, network simulation, network simulator, ns-3, availability, shared risk link groups}, publisherplace = {Graz, Austrija} }
@article{article, author = {Mileti\'{c}, Vedran and Mikac, Branko and D\v{z}anko, Matija}, editor = {Leitgeb, E.}, year = {2013}, pages = {249-255}, keywords = {optical networks, failure modeling, Monte Carlo simulation, network simulation, network simulator, ns-3, availability, shared risk link groups}, title = {Impact Evaluation of Physical Length of Shared Risk Link Groups on Optical Network Availability Using Monte Carlo Simulation}, keyword = {optical networks, failure modeling, Monte Carlo simulation, network simulation, network simulator, ns-3, availability, shared risk link groups}, publisherplace = {Graz, Austrija} }




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