AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS

The ever increasing demands for the performance improvement in Multiprotocol Label Switching (MPLS) network have motivated to develop a resistant MPLS network to the failures at link, node and software of the MPLS network devices. The occurrence fault at link degrades the network performance due to...

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Main Authors: Belal A. Al-Fuhaidi, Hasan A. A. Asaad, Sadik Al-Taweel
Format: Article
Language:English
Published: UMP Publisher 2019-02-01
Series:International Journal of Software Engineering and Computer Systems
Subjects:
tap
lsr
Online Access:https://journal.ump.edu.my/ijsecs/article/view/2719
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spelling doaj-cb9d0f76128245a8bbb21bf79b339d052020-11-25T03:07:34ZengUMP PublisherInternational Journal of Software Engineering and Computer Systems2289-85222180-06502019-02-015116352719AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKSBelal A. Al-FuhaidiHasan A. A. AsaadSadik Al-TaweelThe ever increasing demands for the performance improvement in Multiprotocol Label Switching (MPLS) network have motivated to develop a resistant MPLS network to the failures at link, node and software of the MPLS network devices. The occurrence fault at link degrades the network performance due to data packets loss. This paper proposes an efficient model for rerouting traffic in MPLS network when a single and multi-fault occur in working link based on the protection switching and rerouting algorithms. In this model three algorithms are developed for fast fault recovery in MPLS network based on ingress LSR, alert LSR and core LSR. The proposed model has been simulated using Network Simulator (NS2) version 2.34, simulation results show that the proposed model significantly improves the network performance such that eliminates packet disorder, reduces the packets loss, get better PDR, decreases end to end delay and enhance throughput. The proposed model has less space complexity compared to other methods that reached to 13.33% in single fault and 33.33% in multi-fault and has a fast recovery time compared to other methods.https://journal.ump.edu.my/ijsecs/article/view/2719mplssingle-faultmulti-faulttaplsr
collection DOAJ
language English
format Article
sources DOAJ
author Belal A. Al-Fuhaidi
Hasan A. A. Asaad
Sadik Al-Taweel
spellingShingle Belal A. Al-Fuhaidi
Hasan A. A. Asaad
Sadik Al-Taweel
AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS
International Journal of Software Engineering and Computer Systems
mpls
single-fault
multi-fault
tap
lsr
author_facet Belal A. Al-Fuhaidi
Hasan A. A. Asaad
Sadik Al-Taweel
author_sort Belal A. Al-Fuhaidi
title AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS
title_short AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS
title_full AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS
title_fullStr AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS
title_full_unstemmed AN EFFICIENT FAULT TOLERANCE MODEL FOR SINGLE AND MULTI FAULT IN MPLS NETWORKS
title_sort efficient fault tolerance model for single and multi fault in mpls networks
publisher UMP Publisher
series International Journal of Software Engineering and Computer Systems
issn 2289-8522
2180-0650
publishDate 2019-02-01
description The ever increasing demands for the performance improvement in Multiprotocol Label Switching (MPLS) network have motivated to develop a resistant MPLS network to the failures at link, node and software of the MPLS network devices. The occurrence fault at link degrades the network performance due to data packets loss. This paper proposes an efficient model for rerouting traffic in MPLS network when a single and multi-fault occur in working link based on the protection switching and rerouting algorithms. In this model three algorithms are developed for fast fault recovery in MPLS network based on ingress LSR, alert LSR and core LSR. The proposed model has been simulated using Network Simulator (NS2) version 2.34, simulation results show that the proposed model significantly improves the network performance such that eliminates packet disorder, reduces the packets loss, get better PDR, decreases end to end delay and enhance throughput. The proposed model has less space complexity compared to other methods that reached to 13.33% in single fault and 33.33% in multi-fault and has a fast recovery time compared to other methods.
topic mpls
single-fault
multi-fault
tap
lsr
url https://journal.ump.edu.my/ijsecs/article/view/2719
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