Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks

High capacity telecommunications of today is possible only because of the presence of optical networks. At the heart of an optical network is an optical fiber whose data carrying capabilities are unparalleled. Multicasting is a form of communication in wavelength division multiplexed (WDM) networks...

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Main Author: Satyedranath, Abhishek
Other Authors: Ahmed A. El-Amawy
Format: Others
Language:en
Published: LSU 2006
Subjects:
Online Access:http://etd.lsu.edu/docs/available/etd-07122006-213208/
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spelling ndltd-LSU-oai-etd.lsu.edu-etd-07122006-2132082013-01-07T22:50:44Z Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks Satyedranath, Abhishek Electrical & Computer Engineering High capacity telecommunications of today is possible only because of the presence of optical networks. At the heart of an optical network is an optical fiber whose data carrying capabilities are unparalleled. Multicasting is a form of communication in wavelength division multiplexed (WDM) networks that involves one source and multiple destinations. Light trees, which employ light splitting at various nodes, are used to deliver data to multiple destinations. A fiber cut has been estimated to occur, on an average, once every four days by TEN, a pan-European carrier network. This thesis presents algorithms to make multicast sessions survivable against component failures. We consider multiple link failures and node failures in this work. The two algorithms presented in this thesis use a hybrid approach which is a combination of proactive and reactive approaches to recover from failures. We introduce the novel concept of minimal-hop cycles to tolerate simultaneous multiple link failures in a multicast session. While the first algorithm deals only with multiple link failures, the second algorithm considers the case of node failure and a link failure. Two different versions of the first algorithm have been implemented to thoroughly understand its behavior. Both algorithms were studied through simulators on two different networks, the USA Longhaul network and the NSF network. The input multicast sessions to all our algorithms were generated from power efficient multicast algorithms that make sure the power in the receiving nodes are at acceptable levels. The parameters used to evaluate the performance of our algorithms include computation times, network usage and power efficiency. Two new parameters, namely, recovery times and recovery success probability, have been introduced in this work. To our knowledge, this work is the first to introduce the concept of minimal hop cycles to recover from simultaneous multiple link failures in a multicast session in optical networks. Ahmed A. El-Amawy Jerry Trahan Hsiao-Chun Wu LSU 2006-07-14 text application/pdf http://etd.lsu.edu/docs/available/etd-07122006-213208/ http://etd.lsu.edu/docs/available/etd-07122006-213208/ en unrestricted I hereby certify that, if appropriate, I have obtained and attached herein a written permission statement from the owner(s) of each third party copyrighted matter to be included in my thesis, dissertation, or project report, allowing distribution as specified below. I certify that the version I submitted is the same as that approved by my advisory committee. I hereby grant to LSU or its agents the non-exclusive license to archive and make accessible, under the conditions specified below and in appropriate University policies, my thesis, dissertation, or project report in whole or in part in all forms of media, now or hereafter known. I retain all other ownership rights to the copyright of the thesis, dissertation or project report. I also retain the right to use in future works (such as articles or books) all or part of this thesis, dissertation, or project report.
collection NDLTD
language en
format Others
sources NDLTD
topic Electrical & Computer Engineering
spellingShingle Electrical & Computer Engineering
Satyedranath, Abhishek
Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks
description High capacity telecommunications of today is possible only because of the presence of optical networks. At the heart of an optical network is an optical fiber whose data carrying capabilities are unparalleled. Multicasting is a form of communication in wavelength division multiplexed (WDM) networks that involves one source and multiple destinations. Light trees, which employ light splitting at various nodes, are used to deliver data to multiple destinations. A fiber cut has been estimated to occur, on an average, once every four days by TEN, a pan-European carrier network. This thesis presents algorithms to make multicast sessions survivable against component failures. We consider multiple link failures and node failures in this work. The two algorithms presented in this thesis use a hybrid approach which is a combination of proactive and reactive approaches to recover from failures. We introduce the novel concept of minimal-hop cycles to tolerate simultaneous multiple link failures in a multicast session. While the first algorithm deals only with multiple link failures, the second algorithm considers the case of node failure and a link failure. Two different versions of the first algorithm have been implemented to thoroughly understand its behavior. Both algorithms were studied through simulators on two different networks, the USA Longhaul network and the NSF network. The input multicast sessions to all our algorithms were generated from power efficient multicast algorithms that make sure the power in the receiving nodes are at acceptable levels. The parameters used to evaluate the performance of our algorithms include computation times, network usage and power efficiency. Two new parameters, namely, recovery times and recovery success probability, have been introduced in this work. To our knowledge, this work is the first to introduce the concept of minimal hop cycles to recover from simultaneous multiple link failures in a multicast session in optical networks.
author2 Ahmed A. El-Amawy
author_facet Ahmed A. El-Amawy
Satyedranath, Abhishek
author Satyedranath, Abhishek
author_sort Satyedranath, Abhishek
title Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks
title_short Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks
title_full Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks
title_fullStr Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks
title_full_unstemmed Resilient Optical Multicasting Utilizing Cycles in WDM Optical Networks
title_sort resilient optical multicasting utilizing cycles in wdm optical networks
publisher LSU
publishDate 2006
url http://etd.lsu.edu/docs/available/etd-07122006-213208/
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